Ведущая организация | Федеральное государственное автономное образовательное учреждение высшего образования «Национальный исследовательский университет ИТМО» (Университет ИТМО). (отзыв) Адрес: 197101, Санкт-Петербург, Кронверкский пр., д. 49, лит. А., +7 (812) 607-02-83, od@itmo.ru, https://itmo.ru/ Список основных публикаций работников ведущей организации по теме диссертации в рецензируемых научных изданиях за последние 5 лет: 1. Drozdov A.A., Kozlov S.A. Self-Focusing of Pulsed Terahertz Radiation with a Spectrum in the Region of Anomalous Group-Velocity Dispersion of a Dielectric Medium // Bull. Russ. Acad. Sci. Phys. 2022. V. 86. P. 760–764.
2. Yiwen E., Zhang L., Tsypkin A., Kozlov S., Zhang C., Zhang X.-C. Progress, challenges, and opportunities of terahertz emission from liquids // J. Opt. Soc. Am. B. 2022. V. 39. P. A43-A51.
3. Kuznetsov S., Lenets V., Tumashov M., Sayanskiy A., Lazorskiy P., Belov P., Baena J., Glybovski S. Self-complementary metasurfaces for designing terahertz deflecting circular-polarization beam splitters // Applied Physics Letters. 2021. V. 118. P. 131601.
4. Obraztsov P., Bulgakova V., Chizhov P., Ushakov A., Gets D., Makarov S., Bukin V. Hybrid Perovskite Terahertz Photoconductive Antenna // Nanomaterials. 2021. V. 11. P. 313.
5. Tcypkin A., Zhukova M., Melnik M., Vorontsova I., Kulya M., Putilin S., Kozlov S., Choudhary S., Boyd R.W. Giant Third-Order Nonlinear Response of Liquids at Terahertz Frequencies // Phys. Rev. Applied. 2021. V. 15. P. 054009.
6. Arkhipov R.M., Arkhipov M.V., Pakhomov A.V., Zhukova M.O., Tsypkin A.N., Rosanov N.N. Selective Excitation and Creation of Population Inversion in Quantum Systems Using Unipolar Attosecond and Terahertz Pulses // Opt. Spectrosc. 2021. V. 129. P. 120–126.
7. Ponomareva E.A., Ismagilov A.O., Putilin S.E., Tsypkin A.N., Kozlov S.A. Zhang X.-C. Varying pre-plasma properties to boost terahertz wave generation in liquids // Commun. Phys. 2021. V. 4. P. 4.
8. Lenets V., Kuznetsov S., Sayanskiy A., Lazorskiy P., Glybovski S. A Focusing Circular-Polarization THz Beam Splitter Based on a Self-Complementary Metasurface // IEEE Transactions on Terahertz Science and Technology. 2020. V. 11. P. 165-174.
9. Lepeshov S. All-Dielectric Optically Tunable Metasurface for Terahertz Phase and Amplitude Modulation // Journal of Physics: Conference Series. 2020. V. 1461. P. 012203.
10. Rybin M., Kivshar Y. Guided‐Mode Resonances in All‐Dielectric Terahertz Metasurfaces // Advanced Optical Materials. 2020. V. 8. P. 1900959.
11. Liu X., Kulya M.S., Petrov N. V., Grachev Y.V., Song M., Tcypkin A.N., Kozlov S.A., Zhang X.-C. Spectral Fresnel filter for pulsed broadband terahertz radiation // AIP Advances. 2020. V. 10. P. 125104.
12. Zhukova M., Melnik M., Vorontsova I., Tcypkin A., Kozlov S. Estimations of Low-Inertia Cubic Nonlinearity Featured by Electro-Optical Crystals in the THz Range // Photonics. 2020. V. 7. P. 98.
13. Korolev V., Pushkarev A., Obraztsov P., Tsypkin A., Zakhidov A., Makarov S. Enhanced terahertz emission from imprinted halide perovskite nanostructures // Nanophotonics. 2019. V. 9. P. 187-194.
14. Rybin M., Kivshar Y. All‐Dielectric Active Terahertz Photonics Driven by Bound States in the Continuum // Advanced Materials. 2019. V. 31. P. 1901921.
15. Gulevich D., Koshelets V., Kusmartsev F. Bridging the terahertz gap for chaotic sources with superconducting junctions // Physical Review B. 2019. V. 99. P. 060501. |
Оппоненты | - Урюпин Сергей Александрович, доктор физико-математических наук, главный научный сотрудник лаборатории теории плазменных явлений федерального государственного бюджетного учреждения науки «Физический институт им. П.Н. Лебедева Российской академии наук» (отзыв)
Наименования отрасли науки, научной специальности, по которым оппонентом защищена диссертация: физико-математические науки, специальность 01.04.08 Физика плазмы Список основных публикаций официального оппонента по теме диссертации в рецензируемых научных изданиях за последние 5 лет: 1. Danilov E.A., Uryupin S.A. Terahertz sound generation at the effect of a femtosecond pulse of laser radiation on a metal // Optics Letters. 2023. V. 48. P. 2170.
2. Bezhanov S.G., Uryupin S.A. Ultrashort laser-induced nonlinear currents at the conducting surface and THz radiation // Optical and Quantum Electronics. 2023. V. 55. No. 1. P. 44.
3. Danilov E.A., Uryupin S.A. Enhancement of terahertz fields generation on a silver surface under the effect of short-wavelength femtosecond pulses // Laser Physics Letters. 2022. V. 19. P. 076001.
4. Grishkov V.E., Uryupin S.A. Terahertz radiation generation in doped semiconductor interacting with femtosecond pulse in constant magnetic field // Laser Physics Letters. 2022. V. 19. P. 116101.
5. Ovchinnikov K.N., Uryupin S.A. Generation of terahertz radiation under the effect of femtosecond pulse on plasma in magnetic field // Phys. Rev. E. 2022. V. 106. P. 055213.
6. Grishkov V.E., Ovchinnikov K.N., Uryupin S.A. Effect of Electron-Ion Collisions on the Generation of Terahertz Radiation at the Interaction of Femtosecond Pulse with Plasma in Magnetic Field // Journal of Russian Laser Research. 2021. V. 42. P. 538.
7. Ovchinnikov K.N., Uryupin S.A. Kinetic approach to THz radiation generation at femtosecond laser pulse ponderomotive effect on plasma in magnetic field // Phys. Rev. E. 2021. V. 103. P. 033205.
8. Grishkov V.E., Uryupin S.A. THz radiation generation in semiconductor-metal nanostructure exposed to femtosecond laser pulse of focused radiation // Journal of Applied Physics. 2020. V. 128. P. 203102.
9. Grishkov V.E., Uryupin S.A. Generation of terahertz radiation in dielectric-metal structure irradiated by a femtosecond laser pulse // Optics Letters. 2020. V. 45. P. 41.
10. Ovchinnikov K.N., Uryupin S.A. Generation of Low-Frequency Radiation Under the Laser Pulse Effect on a Plasma in a Magnetic Field // Journal of Russian Laser Research. 2019. V. 40. P. 467.
11. Bezhanov S.G., Uryupin S.A. Effects of metal heating on the spectral composition and generation efficiency of terahertz radiation // Laser Physics Letters. 2019. V. 16. P. 076002.
12. Danilov E.A., Uryupin S.A. Generation of terahertz radiation in the interaction of a femtosecond pulse with a metal film // Quantum Electronics. 2019. V. 49. P. 241. - Овчинников Андрей Владимирович, кандидат физико-математических наук, старший научный сотрудник лаборатории лазерного воздействия федерального государственного бюджетного учреждения науки «Объединенный институт высоких температур Российской академии наук» (отзыв)
Наименования отрасли науки, научной специальности, по которым оппонентом защищена диссертация: физико-математические науки, специальность 01.04.08 Физика плазмы Список основных публикаций официального оппонента по теме диссертации в рецензируемых научных изданиях за последние 5 лет: 1. Ovchinnikov A.V., Chefonov O.V., Agranat M.B., Shalaby M., Sitnikov D.S. Terahertz generation optimization in an OH1 nonlinear organic crystal pumped by a Cr:forsterite laser // Optics Letters. 2022. V. 47. P. 5505.
2. Yurkevich A.A., Ovchinnikov A.V., Agranat M.B. Propagation of an Ultrashort Terahertz Pulse with a High Electric Field Amplitude in a Silicon Sample // High Temperature. 2022. V. 60. P. S430.
3. Chefonov O.V., Ovchinnikov A.V., Agranat M.B. Study of second optical harmonic generation in terahertz pulse-induced antiferromagnetic NiO // Quantum Electronics. 2022. V. 52. P. 269.
4. Chefonov O.V., Ovchinnikov A.V., Agranat M.B. Electrooptical Effect in Silicon Induced by a Terahertz Radiation Pulse // High Temperature. 2022. V. 60. P. S332.
5. Ovchinnikov A.V., Chefonov O.V., Agranat M.B. Generation of the Second Optical Harmonic in Silicon under the Action of Terahertz Pulse with High Electric Field Strength // High Temperature. 2022. V. 60. P. 607.
6. Ovchinnikov A.V., Chefonov O.V., Agranat M.B., Kudryavtsev A.V., Mishina E.D., Yurkevich A.A. Free-carrier generation dynamics induced by ultrashort intense terahertz pulses in silicon // Optics Express. 2021. V. 29. P. 26093.
7. Ovchinnikov A.V., Chefonov O.V., Agranat M.B., Fortov V.E., Jazbinsek M., Hauri C.P. Generation of strong-field spectrally tunable terahertz pulses // Optics Express. 2021. V. 28. P. 33921.
8. Chefonov O.V., Ovchinnikov A.V., Hauri C.P., Agranat M.B. Broadband and narrowband laser-based terahertz source and its application for resonant and non-resonant excitation of antiferromagnetic modes in NiO // Optics Express. 2021. V. 27. P. 27273.
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