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Publications

  1. 230. Ansari M.A., Kim I., Rukhlenko I.D., Zubair M., Yerci S., Tauqeer T., Mehmood M., Rho J. Engineering spin and antiferromagnetic resonances to realize an efficient direction-multiplexed visible meta-hologram // Nanoscale Horizons - 2020, Vol. 5, No. 1, pp. 57-64 [SJR: 3.234]
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  2. 229. Ansari M.A., Kim I., Rukhlenko I.D., Zubair M., Yerci S., Tauqeer T., Mehmood M., Rho J. Erratum: Engineering spin and antiferromagnetic resonances to realize an efficient direction-multiplexed visible meta-hologram (Nanoscale Horizons (2020) 5 (57-64) DOI: 10.1039/C9NH00460B) // Nanoscale Horizons - 2020, Vol. 5, No. 2, pp. 373 [SJR: 3.234]
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  3. 228. Forste J., Tepliakov N.V., Kruchinin S.Y., Lindlau J., Funk V., Forg M., Watanabe K., Taniguchi T., Baimuratov A.S., Hogele A. Exciton g-factors in monolayer and bilayer WSe2 from experiment and theory // Nature Communications - 2020, Vol. 11, pp. 4539-(1-8) [IF: 12.124, SJR: 5.569]
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  4. 227. Hajian H., Rukhlenko I.D., Hanson G.W., Low T., Butun B., Ozbay E. Tunable plasmon-phonon polaritons in anisotropic 2D materials on hexagonal boron nitride // Nanophotonics - 2020, Vol. 9, No. 12, pp. 3909-3920 [IF: 4.492, SJR: 2.618]
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  5. 226. Kundelev E.V., Tepliakov N.V., Leonov M.Y., Maslov V.G., Baranov A.V., Fedorov A.V., Rukhlenko I.D., Rogach A.L. Toward Bright Red-Emissive Carbon Dots through Controlling Interaction among Surface Emission Centers // The Journal of Physical Chemistry Letters - 2020, Vol. 11, pp. 8121-8127
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  6. 225. Peng Q., Akram M., Rukhlenko I.D., Zhu W. Highly transmissive bilayer Huygens’ metasurface with over 315° phase coverage // AEU - International Journal of Electronics and Communications - 2020, Vol. 124, pp. 153330 [IF: 1.147, SJR: 0.593]
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  7. 224. Rudiy S.S., Vovk T.A., Kosternoy I.A., Romanova A.V., Rozhdestvensky Y.V. Outside localization around a toroidal electrode of a Paul trap // Journal of Physics Communications - 2020, Vol. 4, No. 1, pp. 015022 [SJR: 0.431]
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  8. 223. Rudyi S.S., Vovk T.A., Kosternoi I.A., Rybin V.V., Rozhdestvensky Y.V. Single-phase multipole radiofrequency trap // AIP Advances - 2020, Vol. 10, No. 8, pp. 085016 [IF: 1.568, SJR: 0.445]
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  9. 222. Skurlov I.D., Ponomareva E.A., Ismagilov A.O., Putilin S.E., Vovk I.A., Sokolova A.V., Tcypkin A.N., Litvin A.P. Size Dependence of the Resonant Third-Order Nonlinear Refraction of Colloidal PbS Quantum Dots // Photonics - 2020, Vol. 7, No. 2, pp. 39 [SJR: 0.646]
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  10. 221. Stepanidenko E.A., Arefina I.A., Khavlyuk P.D., Dubavik A., Bogdanov K.V., Bondarenko D.P., Cherevkov S.A., Kundelev E.V., Fedorov A.V., Baranov A.V., Maslov V.G., Ushakova E.V., Rogach A. Influence of the solvent environment on luminescent centers within carbon dots // Nanoscale - 2020, Vol. 12, No. 2, pp. 602-609 [IF: 7.367, SJR: 2.18]
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  11. 220. Tepliakov N.V., Orlov A.V., Kundelev E.V., Rukhlenko I.D. Twisted Bilayer Graphene Quantum Dots for Chiral Nanophotonics // Journal of Physical Chemistry C - 2020, Vol. 124, pp. accepted on 19 September 2020 [IF: 4.536, SJR: 1.477]
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  12. 219. Vovk I.A., Litvin A.P., Ushakova E.V., Cherevkov S.A., Fedorov A.V., Rukhlenko I.D. Nonparabolicity of Size-quantized Subbands of Bilayer Semiconductor Quantum Wells with Heterojunction // Optics express - 2020, Vol. 28, No. 2, pp. 1657-1664 [IF: 3.307, SJR: 1.533]
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  13. 218. Vovk I.A., Lobanov V.V., Litvin A.P., Leonov M.Y., Fedorov A.V., Rukhlenko I.D. Band Structure and Intersubband Transitions of Three-Layer Semiconductor Nanoplatelets // Nanomaterials - 2020, Vol. 10, No. 5, pp. 933 [IF: 3.553, SJR: 0.858]
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  14. 217. Yu Y., Xiao F., Rukhlenko I.D., Zhu W. High-efficiency ultra-thin polarization converter based on planar anisotropic transmissive metasurface // AEU - International Journal of Electronics and Communications - 2020, Vol. 118, pp. 153141 [IF: 1.147, SJR: 0.593]
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  15. 216. Zhang J., Wei X., Rukhlenko I.D., Chen H., Zhu .W. Electrically tunable metasurface with independent frequency and amplitude modulations // ACS Photonics - 2020, Vol. 7, No. 1, pp. 265-271 [IF: 6.756, SJR: 2.974]
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  16. 215. Baimuratov A.S., Martynenko I.V., Baranov A.V., Fedorov A.V., Rukhlenko I.D., Kruchinin S.Y. Giant Stokes Shifts in AgInS2 Nanocrystals with Trapped Charge Carriers // Journal of Physical Chemistry C - 2019, Vol. 123, No. 26, pp. 16430-16438 [IF: 4.536, SJR: 1.477]
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  17. 214. Baimuratov A.S., Pereziabova T.P., Tepliakov N.V., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Electric-field effect on the optical activity of helical semiconductor nanoribbons // Proceedings of SPIE - 2019, Vol. 11207, pp. 112070T [SJR: 0.215]
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  18. 213. Baimuratov A.S., Pereziabova T.P., Tepliakov N.V., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Electric-field-enhanced circular dichroism of helical semiconductor nanoribbons // Optics Letters - 2019, Vol. 44, No. 3, pp. 499-502 [IF: 3.416, SJR: 1.788]
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  19. 212. Cai K., He C., Xiao F., Rukhlenko I.D., Zhu W. Resonant mode coupling in hybrid all-dielectric metamaterial // Materials Research Express - 2019, Vol. 6, No. 12, pp. 125801 [IF: 1.068, SJR: 0.365]
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  20. 211. Kundelev E.V., Tepliakov N.V., Leonov M.Y., Maslov V.G., Baranov A.V., Fedorov A.V., Rukhlenko I.D., Rogach A.L. Amino Functionalization of Carbon Dots Leads to Red Emission Enhancement // Journal of Physical Chemistry Letters - 2019, Vol. 10, No. 17, pp. 5111-5116 [IF: 9.353, SJR: 2.976]
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  21. 210. Martynenko I.V., Baimuratov A.S., Weigert F., Soares J.X., Dhamo L., Nickl P., Doerfel I., Pauli J., Rukhlenko I.D., Baranov A.V., Resch-Genger U. Photoluminescence of Ag-In-S/ZnS Quantum Dots: Excitation Energy Dependence and Low-Energy Electronic Structure // Nano Research - 2019, Vol. 12, No. 7, pp. 1595-1603 [IF: 7.354, SJR: 2.518]
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  22. 209. Rudyi S.S., Vovk T.A., Rozhdestvensky Y.V. Features of the effective potential formed by multipole ion trap // Journal of Physics B: Atomic, Molecular and Optical Physics - 2019, Vol. 52, No. 9, pp. 095001 [IF: 1.792, SJR: 0.791]
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  23. 208. Rudyi S.S., Vovk T.A., Rozhdestvensky Y.V. Signature identification by Minkowski dimension // Chaos - 2019, Vol. 29, No. 5, pp. 053110 [IF: 2.283, SJR: 0.934]
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  24. 207. Shao L., Zhu .W., Leonov M.Y., Rukhlenko I.D. Dielectric 2-bit coding metasurface for electromagnetic wave manipulation // Journal of Applied Physics - 2019, Vol. 125, No. 20, pp. 203101 [IF: 2.068, SJR: 0.728]
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  25. 206. Tepliakov N.V., Kundelev E.V., Khavlyuk P., Xiong Y., Leonov M.Y., Zhu .W., Baranov A.V., Fedorov A.V., Rogach A.L., Rukhlenko I.D. Sp2–sp3-Hybridized Atomic Domains Determine Optical Features of Carbon Dots // ACS Nano - 2019, Vol. 13, No. 9, pp. 10737-10744 [IF: 13.942, SJR: 6.131]
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  26. 205. Tepliakov N.V., Vovk I.A., Baimuratov A.S., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Optical activity of chiral semiconductor gammadions // Proceedings of SPIE - 2019, Vol. 11026, pp. 110260B [SJR: 0.215]
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  27. 204. Tepliakov N.V., Vovk I.A., Leonov M.Y., Baranov A., Fedorov A.V., Rukhlenko I.D. Electronic and Optical Properties of Perovskite Quantum-Dot Dimer // Semiconductors - 2019, Vol. 53, No. 16, pp. 2158-2161 [IF: 0.602, SJR: 0.298]
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  28. 203. Tepliakov N.V., Vovk I.A., Shlykov A.I., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Optical activity and circular dichroism of perovskite quantum-dot molecules // Journal of Physical Chemistry C - 2019, Vol. 123, No. 4, pp. 2658–2664 [IF: 4.536, SJR: 1.477]
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  29. 202. Vovk T.A., Rudyi S.S., Ivanov A.V., Perlin E.Y., Rozhdestvensky Y.V. Features of laser cooling of Yb-doped fluorite nanocrystals using coherent population transfer techniques // Proceedings of SPIE - 2019, Vol. 11026, pp. 110260W [SJR: 0.215]
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  30. 201. Vovk T.A., Rudyi S.S., Ivanov A.V., Perlin E.Y., Rozhdestvensky Y.V. Translational cooling of doped nanocrystals by Raman pulses: Towards macroscopic quantum state // Physics Letters A - 2019, Vol. 383, No. 9, pp. 923-928 [IF: 1.772, SJR: 0.513]
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  31. 200. Xie J., Quader S., Xiao F., He C., Liang X., Geng J., Jin R., Zhu .W., Rukhlenko I.D. Truly all-dielectric ultrabroadband metamaterial absorber: Water-based and ground-free // IEEE Antennas and Wireless Propagation Letters - 2019, Vol. 18, No. 3, pp. 536-540 [IF: 2.533, SJR: 1.488]
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  32. 199. Вовк И.А. Моделирование экситонных эффектов в двумерных суперкристаллах из перовскитных квантовых точек // Аннотированный сборник научно-исследовательских выпускных квалификационных работ среди магистров Университета ИТМО 2019 - 2019. - С. 11-16
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  33. 198. Вовк И.А., Леонов М.Ю., Вовк Т.А. Моделирование электрооптических свойств суперкристаллов из перовскитных квантовых точек // Сборник трудов VIII конгресса молодых ученых (Санкт-Петербург, 15-19апреля 2019г.) - 2019. - Т. 1. - С. 47-50
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  34. 197. Baimuratov A.S., Pereziabova T.P., Leonov M.Y., Zhu .W., Baranov A.V., Fedorov A.V., Gun’ko Y.K., Rukhlenko I.D. Optically Active Semiconductor Nanosprings for Tunable Chiral Nanophotonics // ACS Nano - 2018, Vol. 12, No. 6, pp. 6203–6209 [IF: 13.942, SJR: 6.131]
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  35. 196. Chaldyshev V.V., Kundelev E.V., Poddubny A.N., Vasil’Ev A.P., Yagovkina M.A., Chend Y., Maharjan N., Liu Z., Nakarmi M.L., Shakya N.M. Optical Properties of AlGaAs/GaAs Resonant Bragg Structure at the Second Quantum State // Semiconductors - 2018, Vol. 52, No. 4, pp. 447-451 [IF: 0.602, SJR: 0.298]
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  36. 195. Kundelev E.V., Orlova A.O., Maslov V.G., Baranov A.V., Fedorov A.V. Circular dichroism of surface complexes based on quantum dots and azo dye // Chirality - 2018, Vol. 30, No. 3, pp. 261-267 [IF: 2.025, SJR: 0.439]
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  37. 194. Lv W., Xie F., Huang Y., Li J., Fang X., Rashid A., Zhu W., Rukhlenko I.D., Wen G. Nonlinear coupling states study of electromagnetic force actuated plasmonic nonlinear metamaterials // Optics express - 2018, Vol. 26, No. 3, pp. 3211-3220 [IF: 3.307, SJR: 1.533]
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  38. 193. Martynenko I.V., Baimuratov A.S., Osipova V.A., Kuznetsova V.A., Purcell-Milton F., Rukhlenko I.D., Fedorov A.V., Gun’ko Y.K., Resch-Genger U., Baranov A.V. Excitation Energy Dependence of the Photoluminescence Quantum Yield of Core/Shell CdSe/CdS Quantum Dots and Correlation with Circular Dichroism // Chemistry of Materials - 2018, Vol. 32, No. 2, pp. 465-471 [IF: 9.466, SJR: 3.971]
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  39. 192. Pereziabova T.P., Baimuratov A.S., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Optical Activity of Semiconductor Nanosprings // Optics and spectroscopy - 2018, Vol. 125, No. 5, pp. 684-687 [IF: 0.716, SJR: 0.301]
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  40. 191. Purcell-Milton F., Mckenna R., Brennan L., Cullen C., Guillemeney L., Tepliakov N.V., Baimuratov A.S., Rukhlenko I.D., Perova T.S., Duesberg G., Baranov A.V., Fedorov A.V., Gun’ko Y.K. Induction of chirality in two-dimensional nanomaterials: Chiral 2D MoS2 nanostructures // ACS Nano - 2018, Vol. 12, No. 2, pp. 954-964 [IF: 13.942, SJR: 6.131]
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  41. 190. Tepliakov N.V., Baimuratov A.S., Vovk I.A., Leonov M.Y., Baranov A., Fedorov A.V., Rukhlenko I.D. Circular dichroism study of colloidal semiconductor nanoscrolls // Оптика и спектроскопия - 2018, Vol. 125, No. 5, pp. 652 [IF: 0.484]
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  42. 189. Tepliakov N.V., Baimuratov A.S., Vovk I.A., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Circular Dichroism Study of Colloidal Semiconductor Nanoscrolls // Optics and spectroscopy - 2018, Vol. 125, No. 5, pp. 688-692 [IF: 0.716, SJR: 0.301]
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  43. 188. Tepliakov N.V., Vovk I.A., Baimuratov A.S., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Optical Activity of Semiconductor Gammadions beyond Planar Chirality // Journal of Physical Chemistry Letters - 2018, Vol. 9, No. 11, pp. 2941-2945 [IF: 9.353, SJR: 2.976]
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  44. 187. Tepliakov N.V., Vovk T.A., Rukhlenko I.D., Rozhdestvensky Y.V. Maser emission from gravitational states on isolated neutron stars // Astrophysical Journal - 2018, Vol. 857, No. 1, pp. 41 [IF: 5.533, SJR: 2.144]
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  45. 186. Visheratina A.K., Orlova A.O., Purcell-Milton F., Kuznetsova V.A., Visheratin A., Kundelev E.V., Maslov V.G., Baranov A.V., Fedorov A.V., Gun’ko Y.K. Influence of CdSe and CdSe/CdS nanocrystals on the optical activity of chiral organic molecules // Journal of Materials Chemistry C - 2018, Vol. 6, No. 7, pp. 1759-1766 [IF: 5.256, SJR: 1.934]
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  46. 185. Vovk I.A., Tepliakov N.V., Baimuratov A.S., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Excitonic Phenomena in Perovskite Quantum-Dot Supercrystals // Physical Chemistry Chemical Physics - 2018, Vol. 20, No. 38, pp. 25023-25030 [IF: 4.123, SJR: 1.143]
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  47. 184. Vovk I.A., Tepliakov N.V., Baimuratov A.S., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Theory of Frenkel Excitons in Planar Arrays of Perovskite Quantum Dots // Optics and spectroscopy - 2018, Vol. 125, No. 5, pp. 693-697 [IF: 0.716, SJR: 0.301]
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  48. 183. Vovk T.A., Ivanov A.V., Rozhdestvensky Y.V. Coherent optical cooling of rare-earth-doped nanocrystals // Proceedings - International Conference Laser Optics 2018, ICLO 2018 - 2018, pp. 321
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  49. 182. Vovk T.A., Petrov N.V. Optical wavefront synthesis using digital holography // Journal of Physics: Conference Series - 2018, Vol. 1062, No. 1, pp. 012014 [SJR: 0.227]
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  50. 181. Xie J., Zhu .W., Rukhlenko I.D., Xiao F., He C., Geng J., Liang X., Jin R., Premaratne M. Water metamaterial for ultra-broadband and wide-angle absorption // Optics express - 2018, Vol. 26, No. 4, pp. 5052-5059 [IF: 3.307, SJR: 1.533]
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  51. 180. Вовк И.А. Исследование взаимодействия света с полупроводниковыми квантовыми точками и сверхструктурами на их основе // Итоги конкурса "Научные работы студентов Университета ИТМО": Сборник трудов - 2018. - С. 15-17
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  52. 179. Вовк И.А., Тепляков Н.В., Леонов М.Ю. Электромагнитные пучки Лагерра–Гаусса вне параксиального приближения // Сборник трудов VII конгресса молодых ученых (Санкт-Петербург, 17-20апреля 2018г.) - 2018. - Т. 1. - С. 238-242
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  53. 178. Вовк Т.А. Глубокое когерентное охлаждение нанокристаллов флюорита, легированных ионами иттербия // Итоги конкурса "Научные работы студентов Университета ИТМО": Сборник трудов - 2018. - С. 18-19
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  54. 177. Колесова Е.П., Кунделев Е.В., Резник И.А., Орлова А.О., Маслов В.Г. Способ межфазного переноса люминесцирующих коллоидных полупроводниковых нанонкристаллов // не указано - 2018. - С. 1-21
  55. 176. Andronaki S.A., Zhu .W., Leonov M.Y., Shalkovskiy A.G., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Effect of extinction on separation of nanoparticle enantiomers with chiral optical forces // IEEE Photonics Journal - 2017, Vol. 9, No. 2, pp. 4500906 [IF: 2.291, SJR: 0.855]
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  56. 175. Baimuratov A.S., Gun’ko Y.K., Shalkovskiy A.G., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Optical activity of chiral nanoscrolls // Advanced Optical Materials - 2017, Vol. 5, No. 16, pp. 1600982 [IF: 6.875, SJR: 2.75]
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  57. 174. Baimuratov A.S., Pereziabova T.P., Zhu .W., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Optical Anisotropy of Topologically Distorted Semiconductor Nanocrystals // Nano Letters - 2017, Vol. 17, No. 9, pp. 5514-5520 [IF: 12.712, SJR: 5.786]
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  58. 173. Baimuratov A.S., Shlykov A.I., Zhu W., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Excitons in gyrotropic quantum-dot supercrystals // Optics Letters - 2017, Vol. 42, No. 13, pp. 2423-2426 [IF: 3.416, SJR: 1.788]
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  59. 172. Baimuratov A.S., Tepliakov N.V., Gun’ko Y.K., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Erratum: Mixing of quantum states: A new route to creating optical activity (vol 6, pg 5, 2016) // Scientific Reports - 2017, Vol. 7, pp. 2781 [IF: 4.259, SJR: 1.341]
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  60. 171. Baimuratov A.S., Tepliakov N.V., Gun’ko Y.K., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Optical Activity of Helical Quantum-Dot Supercrystals // Optics and spectroscopy - 2017, Vol. 122, No. 1, pp. 42-47 [IF: 0.716]
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  61. 170. Baimuratov A.S., Tepliakov N.V., Gun’ko Y.K., Shalkovskiy A.G., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Intraband optical activity of semiconductor nanocrystals // Chirality - 2017, Vol. 29, No. 5, pp. 159–166 [IF: 2.025, SJR: 0.439]
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  62. 169. Kang M., Zhu .W., Rukhlenko I.D. Experimental observation of the topological structure of exceptional points in an ultrathin hybridized metamaterial // Physical Review A - 2017, Vol. 96, No. 6, pp. 063823 [IF: 2.925, SJR: 1.416]
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  63. 168. Kundelev E.V., Orlova A.O., Maslov V.G., Baranov A.V., Fedorov A.V. Circular Dichroism Spectroscopy of Chlorin e6 and Its Complexes with Quantum Dots in Different Media // Optics and spectroscopy - 2017, Vol. 122, No. 1, pp. 96-100 [IF: 0.716, SJR: 0.301]
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  64. 167. Kundelev E.V., Orlova A.O., Maslov V.G., Baranov A.V., Fedorov A.V. Circular dichroism spectroscopy of complexes based on semiconductor quantum dots and chlorin e6 molecules // Optical Engineering - 2017, Vol. 56, No. 4, pp. 047102 [IF: 1.082, SJR: 0.424]
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  65. 166. Rudyi S.S., Vovk T.A., Kovalev A.V., Polyakov V.M., Ivanov A.V., Perlin E.Y., Rozhdestvensky Y.V. Deep Laser Cooling of Rare-Earth-Doped Nanocrystals in a Radio-Frequency Trap // Journal of the Optical Society of America B: Optical Physics - 2017, Vol. 34, No. 12, pp. 2441-2445 [IF: 1.843, SJR: 0.851]
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  66. 165. Shlykov A.I., Baimuratov A.S., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Optically active quantum-dot molecules // Optics express - 2017, Vol. 25, No. 4, pp. 3811-3825 [IF: 3.307, SJR: 1.533]
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  67. 164. Tepliakov N.V., Baimuratov A.S., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Analytical Study of Optical Activity of Chiral-Shape Nanocrystals // Proceedings of SPIE - 2017, Vol. 10114, pp. 1011418 [SJR: 0.215]
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  68. 163. Tepliakov N.V., Baimuratov A.S., Gun’ko Y.K., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Optical Activity of Semiconductor Nanocrystals with Ionic Impurities // Optics and spectroscopy - 2017, Vol. 122, No. 1, pp. 64-68 [IF: 0.716]
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  69. 162. Tepliakov N.V., Baimuratov A.S., Vovk I.A., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Chiral Optical Properties of Tapered Semiconductor Nanoscrolls // ACS Nano - 2017, Vol. 11, No. 7, pp. 7508-7515 [IF: 13.942, SJR: 6.131]
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  70. 161. Tepliakov N.V., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Absorption Properties of One- and Two-Dimensional Semiconductor Nanocrystals in the Presence of an Electric Field // Optics and spectroscopy - 2017, Vol. 122, No. 1, pp. 101-105 [IF: 0.716, SJR: 0.301]
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  71. 160. Tepliakov N.V., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Optical absorption of semiconductor nanocrystals in strong electric fields // NANOCON 2016 - Conference Proceedings, 8th International Conference on Nanomaterials - Research and Application - 2017, pp. 195-200 [SJR: 0.101]
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  72. 159. Turkov V.K., Rukhlenko I.D., Baranov A.V., Fedorov A.V. Excitonic energy bands formation in Quantum dot supercrystals // NANOCON 2016 - Conference Proceedings, 8th International Conference on Nanomaterials - Research and Application - 2017, pp. 64-68 [SJR: 0.101]
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  73. 158. Ushakova E.V., Kormilina T.K., Burkova M.A., Cherevkov S.A., Zakharov V.V., Turkov V.K., Fedorov A.V., Baranov A.V. The Influence of Ligand Type on Self-Organization and Optical Properties of Cadmium Selenide Quantum Dots // Optics and spectroscopy - 2017, Vol. 122, No. 1, pp. 25–29 [IF: 0.716, SJR: 0.301]
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  74. 157. Vovk I.A., Baimuratov A.S., Zhu .W., Shalkovskiy A.G., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Chiral nanoparticles in singular light fields // Scientific Reports - 2017, Vol. 7, pp. 45925 [IF: 4.259]
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  75. 156. Vovk I.A., Tepliakov N.V., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Analytical theory of real-argument Laguerre–Gaussian beams beyond the paraxial approximation // Journal of the Optical Society of America A: Optics and Image Science, and Vision - 2017, Vol. 34, No. 10, pp. 1940-1944 [IF: 1.621, SJR: 0.67]
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  76. 155. Vovk T.A., Petrov N.V. Application of digital optical phase conjugation in the problem of three-dimensional polygonal hologram formation // Proceedings of SPIE - 2017, Vol. 10126, pp. 101260B [SJR: 0.215]
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  96. 135. Hajian H., Rukhlenko I.D., Leung P.T., Caglayan H., Ozbay E. Guided Plasmon Modes of a Graphene-Coated Kerr Slab // Plasmonics - 2016, Vol. 11, No. 3, pp. 735-741 [IF: 2.139, SJR: 0.648]
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  98. 133. Kuznetsova V., Orlova A.O., Martynenko I.V., Kundelev E.V., Maslov V.G., Fedorov A.V., Baranov A.V., Gun’ko Y.K. Complexes of photosensitizer and CdSe/ZnS quantum dots passivated with BSA: optical properties and intracomplex energy transfer // Proceedings of SPIE - 2016, Vol. 9887, pp. 988738 [SJR: 0.215]
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  99. 132. Mukhina M.V., Baimuratov A.S., Rukhlenko I.D., Maslov V.G., Finn P.M., Gun’ko Y.K., Baranov A.V., Fedorov A.V. Circular Dichroism of Electric-Field-Oriented CdSe/CdS Quantum Dots-in-Rods // ACS Nano - 2016, Vol. 10, No. 9, pp. 8904–8909 [IF: 13.942, SJR: 6.131]
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  101. 130. Rukhlenko I.D., Tepliakov N.V., Baimuratov A.S., Andronaki S.A., Gun'Ko Y.K., Baranov A.V., Fedorov A.V. Completely chiral optical force for enantioseparation // Scientific Reports - 2016, Vol. 6, pp. 36884 [IF: 4.259, SJR: 1.341]
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  102. 129. Tepliakov N.V., Baimuratov A.S., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Optical Activity of Chirally Distorted Nanocrystals // Journal of Applied Physics - 2016, Vol. 119, No. 19, pp. 194302 [IF: 2.068, SJR: 0.728]
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  105. 126. Tepliakov N.V., Ponomareva I.O., Leonov M.Y., Baranov A.V., Fedorov A.V., Rukhlenko I.D. Field-Induced Broadening of Electroabsorption Spectra of Semiconductor Nanorods and Nanoplatelets // Journal of Physical Chemistry C - 2016, Vol. 120, No. 4, pp. 2379–2385 [IF: 4.536, SJR: 1.477]
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  108. 123. Вовк И.А. Влияние термической обработки на оптические и электрические свойства гибридных структур на основе многослойного графена и квантовых точек // Сборник работ студентов Университета ИТМО, победителей конкурса грантов Правительства Санкт-Петербурга - 2016. - С. 42-47
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  133. 98. Baimuratov A.S., Rukhlenko I.D., Turkov V.K., Ponomareva I.O., Leonov M.Y., Perova T.S., Berwick K., Baranov A.V., Fedorov A.V. Level Anticrossing of Impurity States in Semiconductor Nanocrystals // Scientific Reports - 2014, Vol. 4, pp. 6917-(1-6) [IF: 4.259, SJR: 1.341]
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  134. 97. Reddy M.S., Vijaya R., Rukhlenko I.D., Premaratne M. Low-threshold lasing in photonic-crystal heterostructures // Optics express - 2014, Vol. 22, No. 6, pp. 6229-6238 [IF: 3.307, SJR: 1.533]
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  135. 96. Rukhlenko I.D. Modeling nonlinear optical phenomena in silicon-nanocrystal composites and waveguides // Journal of Optics - 2014, Vol. 16, No. 1, pp. 015207-(1-11) [IF: 1.741]
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  136. 95. Rukhlenko I.D. Optical propagation through graded-index metamaterials in the presence of gain // Plasmonics - 2014, Vol. 9, No. 6, pp. 1257-1263 [IF: 2.139, SJR: 0.648]
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  137. 94. Rukhlenko I.D., Kalavally V. Raman amplification in silicon-nanocrystal waveguides // Journal of Lightwave Technology - 2014, Vol. 32, No. 1, pp. 130-134 [IF: 3.671, SJR: 1.634]
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  138. 93. Rupasinghe C., Rukhlenko I.D., Premaratne M. Spaser made of graphene and carbon nanotubes // ACS Nano - 2014, Vol. 8, No. 3, pp. 2431-2438 [IF: 13.942, SJR: 6.131]
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  139. 92. Sikdar D., Rukhlenko I.D., Cheng W., Premaratne M. Tunable broadband optical responses of substrate-supported metal/dielectric/metal nanospheres // Plasmonics - 2014, Vol. 9, No. 3, pp. 659-672 [IF: 2.139, SJR: 0.648]
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  140. 91. Zhu W., Rukhlenko I.D., Xiao F., Premaratne M. Polarization conversion in U-shaped chiral metamaterial with four-fold symmetry breaking // Journal of Applied Physics - 2014, Vol. 115, No. 14, pp. 143101-(1-4) [IF: 2.068, SJR: 0.728]
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  143. 88. Handapangoda D., Rukhlenko I.D., Premaratne M. Analytical study of optimal design and gain parameters of double-slot plasmonic waveguides // Journal of Optics - 2013, Vol. 15, No. 3, pp. 035006 [IF: 1.741]
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  144. 87. Reddy M.S., Kedia S., Vijaya R., Ray A.K., Sinha S., Rukhlenko I.D., Premaratne M. Analysis of Lasing in Dye-Doped Photonic Crystals // IEEE Photonics Journal - 2013, Vol. 5, No. 1, pp. 4700409 [IF: 2.291, SJR: 0.855]
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  145. 86. Reddy M.S., Vijaya R., Rukhlenko I.D., Premaratne M. Low-threshold lasing in active opal photonic crystals // Optics Letters - 2013, Vol. 38, No. 7, pp. 1046-1048 [IF: 3.416, SJR: 1.788]
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  146. 85. Rukhlenko I.D. Theory of nonlinear pulse propagation in silicon-nanocrystal waveguides // Optics express - 2013, Vol. 21, No. 3, pp. 2832–2846 [IF: 3.307, SJR: 1.533]
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  147. 84. Rukhlenko I.D., Kalavally V., Zhu W., Premaratne M. Engineering optical nonlinearities in silicon-nanocrystal waveguides // Journal of the Optical Society of America B: Optical Physics - 2013, Vol. 30, No. 12, pp. 3145-3150 [IF: 1.843, SJR: 0.851]
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  148. 83. Rupasinghe C., Rukhlenko I.D., Premaratne M. Design optimization of spasers considering the degeneracy of excited plasmon modes // Optics express - 2013, Vol. 21, No. 13, pp. 15335–15349 [IF: 3.307, SJR: 1.533]
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  149. 82. Sikdar D., Rukhlenko I.D., Cheng W., Premaratne M. Effect of number density on optimal design of gold nanoshells for plasmonic photothermal therapy // Biomedical Optics Express - 2013, Vol. 4, No. 1, pp. 15-31 [IF: 3.337, SJR: 1.591]
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  150. 81. Sikdar D., Rukhlenko I.D., Cheng W., Premaratne M. Optimized gold nanoshell ensembles for biomedical applications // Nanoscale Research Letters - 2013, Vol. 8, pp. 142 [IF: 2.833, SJR: 0.792]
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  151. 80. Sikdar D., Rukhlenko I.D., Cheng W., Premaratne M. Unveiling ultrasharp scattering-switching signatures of layered gold-dielectric-gold nanospheres // Journal of the Optical Society of America B: Optical Physics - 2013, Vol. 30, No. 8, pp. 2066-2074 [IF: 1.843, SJR: 0.851]
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  152. 79. Xiong W., Sikdar D., Walsh M., Si K.J., Tang Y., Chen Y., Mazid R., Weyland M., Rukhlenko I.D., Etheridge J., Premaratne M., Li X., Cheng W. Single-crystal caged gold nanorods with tunable broadband plasmon resonances // Chemical Communications - 2013, Vol. 49, No. 83, pp. 9630–9632 [IF: 6.319, SJR: 1.992]
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  153. 78. Zhu W., Rukhlenko I.D., Huang Y., Wen G., Premaratne M. Wideband giant optical activity and negligible circular dichroism of near-infrared chiral metamaterial based on a complementary twisted configuration // Journal of Optics - 2013, Vol. 15, No. 12, pp. 125101 [IF: 1.741]
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  154. 77. Zhu W., Rukhlenko I.D., Premaratne M. Application of zero-index metamaterials for surface plasmon guiding // Applied Physics Letters - 2013, Vol. 102, No. 1, pp. 011910 [IF: 3.411, SJR: 1.343]
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  155. 76. Zhu W., Rukhlenko I.D., Premaratne M. Graphene metamaterial for optical reflection modulation // Applied Physics Letters - 2013, Vol. 102, No. 24, pp. 241914 [IF: 3.411, SJR: 1.343]
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  156. 75. Zhu W., Rukhlenko I.D., Si L., Premaratne M. Graphene-enabled tunability of optical fishnet metamaterial // Applied Physics Letters - 2013, Vol. 102, No. 12, pp. 121911 [IF: 3.411, SJR: 1.343]
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  157. 74. Леонов М.Ю., Орлова А.О., Баранов А.В., Рухленко И.Д., Гунько Ю.К., Федоров А.В. Нестационарное внутризонное поглощение света полупроводниковыми наностержнями // Оптический журнал - 2013. - Т. 80. - № 11. - С. 7-15
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  158. 73. Baimuratov A.S., Turkov V.K., Rukhlenko I.D., Fedorov A.V. Shape-induced anisotropy of intraband luminescence from a semiconductor nanocrystal // Optics Letters - 2012, Vol. 37, No. 22, pp. 4645-4647 [IF: 3.416, SJR: 1.788]
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  159. 72. Handapangoda D., Rukhlenko I.D., Premaratne M. Optimizing the design of planar heterostructures for plasmonic waveguiding // Journal of the Optical Society of America B - 2012, Vol. 29, No. 4, pp. 553–558
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  160. 71. Kalavally V., Rukhlenko I.D., Premaratne M. Combined Effect of ASE and DRBS on Noise in Pulse-Pumped Fiber Raman Amplifiers // IEEE Journal of Lightwave Technology - 2012, Vol. 30, No. 18, pp. 2983–2987
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  161. 70. Leonov M.Y., Turkov V.K., Rukhlenko I.D., Fedorov A.V. Kinetics of thermalized luminescence of a single quantum dot at room temperature // Optics and spectroscopy - 2012, Vol. 113, No. 3, pp. 259-264 [IF: 0.716, SJR: 0.301]
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  162. 69. Ng K.C., Udagedara I.B., Rukhlenko I.D., Chen Y., Tang Y., Premaratne M. Free-standing plasmonic-nanorod superlattice sheets // ACS Nano - 2012, Vol. 6, No. 1, pp. 925–934 [IF: 13.942, SJR: 6.131]
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  163. 68. Reddy M.S., Vijaya R., Rukhlenko I.D., Premaratne M. Spatial and spectral distributions of emission from dye-doped photonic crystals in reflection and transmission geometries // Journal of Nanophotonics - 2012, Vol. 6, No. 1, pp. 063526 [IF: 1.325, SJR: 0.399]
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  164. 67. Rukhlenko I.D., Belov P.A., Litchinitser N.M., Boltasseva A.E. Modern Trends in Metamaterial Applications // Advances in OptoElectronics - 2012, Vol. 2012, pp. 514270 [SJR: 0.188]
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  165. 66. Rukhlenko I.D., Leonov M.Y., Turkov V.K., Litvin A.P., Baimuratov A.S., Baranov A.V., Fedorov A.V. Kinetics of pulse-induced photoluminescence from a semiconductor quantum dot // Optics express - 2012, Vol. 20, No. 25, pp. 27612-27635 [IF: 3.307, SJR: 1.533]
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  166. 65. Rukhlenko I.D., Premaratne M. Optimization of nonlinear performance of silicon-nanocrystal cylindrical nanowires // IEEE Photonics Journal - 2012, Vol. 4, No. 3, pp. 952–959 [IF: 2.291, SJR: 0.855]
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  167. 64. Rukhlenko I.D., Premaratne M., Agrawal G.P. Effective mode area and its optimization in silicon-nanocrystal waveguides // Optics Letters - 2012, Vol. 37, No. 12, pp. 2295–2297 [IF: 3.416, SJR: 1.788]
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  168. 63. Rukhlenko I.D., Premaratne M., Agrawal G.P. Effective third-order susceptibility of silicon-nanocrystal-doped silica // Optics Express - 2012, Vol. 20, No. 24, pp. 26275–26284 [SJR: 1.533]
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  169. 62. Rukhlenko I.D., Premaratne M., Agrawal G.P. Guided plasmonic modes of anisotropic slot waveguides // Nanotechnology - 2012, Vol. 23, No. 44, pp. 444006 [IF: 3.44, SJR: 1.026]
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  170. 61. Rukhlenko I.D., Premaratne M., Agrawal G.P. Plasmonic Modes of Metamaterial-Based Slot Waveguides // Advances in OptoElectronics - 2012, Vol. 2012, pp. 907183 [SJR: 0.188]
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  171. 60. Ushakova E.V., Litvin A.P., Parfenov P.S., Fedorov A.V., Artemyev M.V., Prudnikau A.V., Rukhlenko I.D., Baranov A.V. Anomalous Size-Dependent Decay of Low-Energy Luminescence from PbS Quantum Dots in Colloidal Solution // ACS Nano - 2012, Vol. 6, No. 10, pp. 8913 - 8921 [IF: 13.942, SJR: 6.131]
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  172. 59. Zhu W., Rukhlenko I.D., Premaratne M. Light amplification in zero-index metamaterial with gain inserts // Applied Physics Letters - 2012, Vol. 101, pp. 031907 [IF: 3.411, SJR: 1.343]
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  173. 58. Zhu W., Rukhlenko I.D., Premaratne M. Linear transformation optics for plasmonics // Journal of the Optical Society of America B - 2012, Vol. 29, No. 10, pp. 2659–2664
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  174. 57. Zhu W., Rukhlenko I.D., Premaratne M. Maneuvering propagation of surface plasmon polaritons using complementary medium inserts // IEEE Photonics Journal - 2012, Vol. 4, No. 3, pp. 741–747 [IF: 2.291, SJR: 0.855]
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  175. 56. Zhu W., Rukhlenko I.D., Premaratne M. Manipulating energy flow in variable-gap plasmonic waveguides // Optics Letters - 2012, Vol. 37, No. 24, pp. 5151–5153 [IF: 3.416, SJR: 1.788]
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  176. 55. Zhu W., Rukhlenko I.D., Wen G., Premaratne M. Configurable metamaterial absorber with pseudo wideband spectrum // Optics Express - 2012, Vol. 20, No. 6, pp. 6616–6621 [SJR: 1.533]
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  177. 54. Федоров А.В., Баймуратов А.С. Theory of quasi-elastic secondary emission from a quantum dot in the regime of vibrational resonance // Optics Letters - 2012, Vol. 37, No. 22, pp. 4645-4647
  178. 53. Baimuratov A.S., Baranov A.V., Fedorov A.V. Light absorption involving longitudinal optical phonons in semiconductor quantum dots // Optics and spectroscopy - 2011, Vol. 111, No. 1, pp. 51–60 [IF: 0.716, SJR: 0.301]
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  179. 52. Dissanayake C.M., Rukhlenko I.D., Premaratne M., Agrawal G.P. Polarization-dependent spectral broadening of femtosecond pulses in silicon waveguides // Journal of the Optical Society of America B - 2011, Vol. 28, No. 10, pp. 2383–2389
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  180. 51. Handapangoda D., Premaratne M., Rukhlenko I.D., Jagadish C. Optimal design of composite nanowires for extended reach of surface plasmon-polaritons // Optics Express - 2011, Vol. 19, No. 17, pp. 16058–16074 [SJR: 1.533]
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  181. 50. Leonov M.Y., Baranov A.V., Fedorov A.V. Transient Interband Light Absorption by Quantum Dots: Nondegenerate Case of Pump–Probe Spectroscopy // Optics and spectroscopy - 2011, Vol. 110, No. 1, pp. 24-32 [IF: 0.716, SJR: 0.301]
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  182. 49. Leonov M.Y., Baranov A.V., Fedorov A.V. Transient intraband light absorption by quantum dots: Pump-probe spectroscopy // Optics and spectroscopy - 2011, Vol. 111, No. 5, pp. 798-807 [IF: 0.716, SJR: 0.301]
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  183. 48. Pannipitiya A., Rukhlenko I.D., Premaratne M. Analytical modeling of resonant cavities for plasmonic-slot-waveguide junctions // IEEE Photonics Journal - 2011, Vol. 3, No. 2, pp. 220–233 [IF: 2.291, SJR: 0.855]
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  184. 47. Pannipitiya A., Rukhlenko I.D., Premaratne M. Analytical theory of optical bistability in plasmonic nanoresonators // Journal of the Optical Society of America B - 2011, Vol. 28, No. 11, pp. 2820–2826
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  185. 46. Rukhlenko I.D., Fedorov A.V., Baimuratov A.S., Premaratne M. Theory of quasi-elastic secondary emission from a quantum dot in the regime of vibrational resonance // Optics express - 2011, Vol. 19, No. 16, pp. 15459–15482 [IF: 3.307, SJR: 1.533]
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  186. 45. Rukhlenko I.D., Pannipitiya A., Premaratne M. Dispersion relation for surface plasmon-polaritons in metal/nonlinear-dielectric/metal slot waveguides // Optics Letters - 2011, Vol. 36, No. 17, pp. 3374–3376 [IF: 3.416, SJR: 1.788]
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  187. 44. Rukhlenko I.D., Pannipitiya A., Premaratne M., Agrawal G.P. Exact dispersion relation for nonlinear plasmonic waveguides // Physical Review B - 2011, Vol. 84, No. 11, pp. 113409 [IF: 3.836, SJR: 1.811]
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  188. 43. Rukhlenko I.D., Premaratne M., Agrawal G.P. Maximization of gain in slow-light silicon Raman amplifiers // International Journal of Optics - 2011, Vol. 2011, pp. 581810 [SJR: 0.206]
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  189. 42. Rukhlenko I.D., Premaratne M., Agrawal G.P. Nonlinear propagation in silicon-based plasmonic waveguides from the standpoint of applications // Optics Express - 2011, Vol. 19, No. 1, pp. 206–217 [SJR: 1.533]
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  190. 41. Turkov V.K., Kruchinin S.Y., Fedorov A.V. Intraband optical transitions in semiconductor quantum dots: Radiative electronic-excitation lifetime // Optics and spectroscopy - 2011, Vol. 110, No. 5, pp. 740–747 [IF: 0.716, SJR: 0.301]
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  191. 40. Udagedara I.B., Rukhlenko I.D., Premaratne M. Complex-w approach versus complex-k approach in description of gain-assisted SPP propagation along linear chains of metallic nanospheres // Physical Review B - 2011, Vol. 83, No. 11, pp. 115451 [IF: 3.836, SJR: 1.811]
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  192. 39. Udagedara I.B., Rukhlenko I.D., Premaratne M. Surface plasmon-polariton propagation in piecewise linear chains of composite nanospheres: The role of optical gain and chain layout // Optics Express - 2011, Vol. 19, No. 21, pp. 19973–19986 [SJR: 1.533]
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  193. 38. Федоров А.В., Турков В.К. Внутризонные оптические переходы в полупроводниковых квантовых точках: радиационное время жизни электронных возбуждений // Оптика и спектроскопия - 2011. - Т. 110. - № 5. - С. 791-798
  194. 37. Dissanayake C.M., Premaratne M., Rukhlenko I.D., Agrawal G.P. FDTD modeling of anisotropic nonlinear optical phenomena in silicon waveguides // Optics Express - 2010, Vol. 18, No. 20, pp. 21427–21448 [SJR: 1.533]
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  195. 36. Handapangoda D., Rukhlenko I.D., Premaratne M., Jagadish C. Optimization of gain-assisted waveguiding in metal-dielectric nanowires // Optics Letters - 2010, Vol. 35, No. 24, pp. 4190–4192 [IF: 3.416, SJR: 1.788]
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  196. 35. Kalavally V., Rukhlenko I.D., Premaratne M., Win T. Multipath interference in pulse-pumped fiber Raman amplifiers: Analytical approach // IEEE Journal of Lightwave Technology - 2010, Vol. 28, No. 18, pp. 2701–2707
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  197. 34. Kozlov S.A., Turkov V.K. Radiation generation at multiple and Raman frequencies accompanying nonlinear reflection of two light pulses incident at different angles and consisting of a small number of vibrations // Journal of Optical Technology - 2010, Vol. 77, No. 11, pp. 729-730 [IF: 0.299, SJR: 0.269]
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  198. 33. Leonov M.Y., Baranov A.V., Fedorov A.V. Transient interband light absorption by quantum dots: Degenerate pump-probe spectroscopy // Optics and spectroscopy - 2010, Vol. 109, No. 3, pp. 358-365 [IF: 0.716, SJR: 0.301]
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  199. 32. Pannipitiya A., Rukhlenko I.D., Premaratne M., Hattori H.T., Agrawal G.P. Improved transmission model for metal-dielectric-metal plasmonic waveguides with stub structure // Optics Express - 2010, Vol. 18, No. 6, pp. 6191–6204 [SJR: 1.533]
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  200. 31. Rukhlenko I.D., Dissanayake C., Premaratne M. Visualization of electromagnetic-wave polarization evolution using the Poincare sphere // Optics Letters - 2010, Vol. 35, No. 13, pp. 2221–2223 [IF: 3.416, SJR: 1.788]
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  201. 30. Rukhlenko I.D., Dissanayake C., Premaratne M., Agrawal G.P. Optimization of Raman amplification in silicon waveguides with finite facet reflectivities // IEEE Journal on Selected Topics in Quantum Electronics - 2010, Vol. 16, No. 1, pp. 226–233 [SJR: 1.353]
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  202. 29. Rukhlenko I.D., Garanovich I.L., Premaratne M., Sukhorukov A.A., Agrawal G.P., Kivshar Y.S. Polarization rotation in silicon waveguides: Analytical modeling and applications // IEEE Photonics Journal - 2010, Vol. 2, No. 3, pp. 423–435 [IF: 2.291, SJR: 0.855]
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  203. 28. Rukhlenko I.D., Premaratne M. Spectral compression and group delay of optical pulses in silicon Raman amplifiers // Optics Letters - 2010, Vol. 35, No. 18, pp. 3138–3140 [IF: 3.416, SJR: 1.788]
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  204. 27. Rukhlenko I.D., Premaratne M., Agrawal G.P. Analytical study of optical bistability in silicon ring resonators // Optics Letters - 2010, Vol. 35, No. 1, pp. 55–57 [IF: 3.416, SJR: 1.788]
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  205. 26. Rukhlenko I.D., Premaratne M., Agrawal G.P. Nonlinear silicon photonics: Analytical tools // IEEE Journal of Selected Topics in Quantum Electronics - 2010, Vol. 16, No. 1, pp. 200–215 [IF: 3.971, SJR: 1.353]
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  206. 25. Rukhlenko I.D., Premaratne M., Agrawal G.P. Theory of negative refraction in periodic stratified metamaterials // Optics Express - 2010, Vol. 18, No. 26, pp. 27916–27929 [SJR: 1.533]
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  207. 24. Rukhlenko I.D., Premaratne M., Garanovich I.L., Sukhorukov A.A., Agrawal G.P. Analytical study of pulse amplification in silicon Raman amplifiers // Optics Express - 2010, Vol. 18, No. 17, pp. 18324–18338 [SJR: 1.533]
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  208. 23. Rukhlenko I.D., Udagedara I.B., Premaratne M., Agrawal G.P. Effect of free carriers on pump-to-signal noise transfer in silicon Raman amplifiers // Optics Letters - 2010, Vol. 35, No. 14, pp. 2343–2345 [IF: 3.416, SJR: 1.788]
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  209. 22. Spontaneous emission of guided polaritons by quantum dot coupled to metallic nanowire: Beyond the dipole approximation // Optics Express - 2009, Vol. 17, No. 20, pp. 17570-17581
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  210. 21. Dissanayake C.M., Rukhlenko I.D., Premaratne M., Agrawal G.P. Raman-mediated nonlinear interactions in silicon waveguides: Copropagating and counterpropagating pulses // IEEE Photonics Technology Letters - 2009, Vol. 21, No. 19, pp. 1372–1374 [IF: 2.375, SJR: 0.945]
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  211. 20. Hattori H.T., Li Z., Liu D., Rukhlenko I.D., Premaratne M. Coupling of light from microdisk lasers into plasmonic nano-antennas // Optics Express - 2009, Vol. 17, No. 23, pp. 20878–20884 [SJR: 1.533]
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  212. 19. Kalavally V., Rukhlenko I.D., Premaratne M. Analytical study of RIN transfer in pulse-pumped Raman amplifiers // Journal of Lightwave Technology - 2009, Vol. 27, No. 20, pp. 4536-4543 [IF: 3.671, SJR: 1.634]
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  213. 18. Rukhlenko I.D., Dissanayake C., Premaratne M., Agrawal G.P. Maximization of net optical gain in silicon-waveguide Raman amplifiers // Optics Express - 2009, Vol. 17, No. 7, pp. 5807–5814 [SJR: 1.533]
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  214. 17. Rukhlenko I.D., Premaratne M., Agrawal G.P. Analytical study of optical bistability in silicon-waveguide resonators // Optics Express - 2009, Vol. 17, No. 24, pp. 22124–22137 [SJR: 1.533]
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  215. 16. Rukhlenko I.D., Premaratne M., Dissanayake C., Agrawal G.P. Continuous-wave Raman amplification in silicon waveguides: Beyond the undepleted pump approximation // Optics Letters - 2009, Vol. 34, No. 4, pp. 536–538 [IF: 3.416, SJR: 1.788]
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  216. 15. Rukhlenko I.D., Premaratne M., Dissanayake C., Agrawal G.P. Nonlinear pulse evolution in silicon waveguides: An approximate analytic approach // Journal of Lightwave Technology - 2009, Vol. 27, No. 15, pp. 3241–3248 [IF: 3.671, SJR: 1.634]
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  217. 14. Udagedara I., Premaratne M., Rukhlenko I.D., Hattori H.T., Agrawal G.P. Unified perfectly matched layer for finite-difference time-domain modeling of dispersive optical materials // Optics Express - 2009, Vol. 17, No. 23, pp. 21179–21190 [SJR: 1.533]
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  218. 13. Rukhlenko I.D., Fedorov A.V., Baranov A.V., Perova T.S., Berwick K. Tip-enhanced secondary emission of a semiconductor quantum dot // Physical Review B - 2008, Vol. 77, No. 4, pp. 045331 [IF: 3.836, SJR: 1.811]
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  219. 12. Fedorov A.V., Baranov A.V., Rukhlenko I.D., Perova T.S., Berwick K. Quantum dot energy relaxation mediated by plasmon emission in doped covalent semiconductor heterostructures // Physical Review B - 2007, Vol. 4, pp. 045332 [IF: 3.836, SJR: 1.811]
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  220. 11. Fedorov A.V., Rukhlenko I.D. Study of electronic dynamics of quantum dots using resonant photoluminescence technique // Optics and Spectroscopy - 2006, Vol. 100, No. 5, pp. 716–723 [SJR: 0.301]
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  221. 10. Rukhlenko I.D. Carrier relaxation in quantum dots involving bulk plasmon modes of doped components of heterostructures // Scientific and Technical Bulletin of SPSU ITMO - 2006, Vol. 26, pp. 362–372
  222. 9. Rukhlenko I.D., Fedorov A.V. Penetration of electric fields induced by surface phonon modes into the layers of a semiconductor heterostructure // Optics and Spectroscopy - 2006, Vol. 101, No. 2, pp. 253–264 [SJR: 0.301]
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  223. 8. Rukhlenko I.D., Fedorov A.V. Propagation of electric fields induced by optical phonons in semiconductor heterostructures // Optics and Spectroscopy - 2006, Vol. 100, No. 2, pp. 238–244 [SJR: 0.301]
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  224. 7. Rukhlenko I.D., Fedorov A.V. Resonant photoluminescence of quantum dots: Dynamics of electron subsystem // Bulletin of the Russian Academy of Sciences: Physics - 2006, Vol. 70, No. 1, pp. 126–129 [SJR: 0.226]
  225. 6. Рухленко И.Д., Федоров А.В. Резонансная фотолюминесценция квантовых точек: Динамика электронной подсистемы // Известия РАН. Серия физическая - 2006. - Т. 70. - № 1. - С. 111-113
  226. 5. Fedorov A.V., Baranov A.V., Rukhlenko I.D., Gaponenko S.V. Enhanced intraband carrier relaxation in quantum dots due to the effect of plasmon-LO-phonon density of states in doped heterostructures // Physical Review B - 2005, Vol. 71, No. 19, pp. 195310 [IF: 3.836, SJR: 1.811]
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  227. 4. Baranov A.V., Fedorov A.V., Rukhlenko I.D., Masumoto Y. Intraband carrier relaxation in quantum dots embedded in doped heterostructures // Physical Review B - 2003, Vol. 68, No. 20, pp. 205318 [IF: 3.836, SJR: 1.811]
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  228. 3. Baranov A.V., Fedorov A.V., Rukhlenko I.D., Masumoto Y. New mechanism of intraband carrier relaxation in quantum dots // Physica Status Solidi (c) - 2003, Vol. 0, No. 4, pp. 1217–1220
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  229. 2. Fedorov A.V., Baranov A.V., Rukhlenko I.D., Masumoto Y. New many-body mechanism of intraband carrier relaxation in quantum dots embedded to doped heterostructures // Solid State Communications - 2003, Vol. 128, No. 6–7, pp. 219–223 [IF: 1.554, SJR: 0.419]
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  230. 1. Vinar I., Sudo S., Geraud A., Perin J.P., Manzagol J., Ladd P., Saksagansky G., Skoblikov S., Lukin A., Umov A., Reznichenko P., Khlopenkov K., Krasilnikov I., Rukhlenko I. Pellet injectors developed at the PELIN laboratory for international projects // Fusion Engineering and Design - 2001, Vol. 58–59, pp. 295–299 [SJR: 0.558]
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