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005.007.01
005.007.02
See Russian version.
Theses prepared for submission
Postgraduate
Fields of study
Междисциплинарная кафедра подготовки кадров высшей квалификации
Admission to the postgraduate
Прием в целевую аспирантуру
Список аспирантов (на 1 октября 2024 года)
anti-corruption
Mitsai Evgeniy Viktorovich
Degree:
PhD (Phys.-Math.)
Position:
scientific employee
Department:
Лаборатория синхротронных методов изучения свойств новых функциональных наноматериалов оптоэлектроники, нанофотоники и тераностики (№25)
Room:
129
Email:
mitsai@iacp.dvo.ru
Publications:
2024
2023
2022
2021
2020
2019
2018
2017
2016
Article
2017.
2020.
2017. A. V. Dyshlyuk, E. V. Mitsai, A. B. Cherepakhin, O. B. Vitrik, and Yu. N. Kulchin Surface Plasmon Resonance in a Bent Single-Mode Fiber with a Metallized Cladding Experimental Research // Technical Physics Letters. 2017. Vol.43. Iss.8. P.727–729.
2019.
2016. Dyshlyuk A.V., Mitsay E.V., Cherepakhin A.B., Vitrik O.B., Kulchin Yu.N. Experimental verification of surface plasmon resonance excitation in bent single-mode optical fibers using whispering gallery modes // Proceedings of SPIE (Fundamental and Applied Problems of Photonics: Selected papers of APCOM’2016). 2016. V. 10176. COM16-54.
2022.
2019.
2024.
2017.
2017.
2023.
2023.
2020.
2021. Yulia Borodaenko, Sergey Syubaev, Stanislav Gurbatov, Alexey Zhizhchenko, Aleksey Porfirev, Svetlana Khonina, Eugeny Mitsai, Andrey V. Gerasimenko, Alexander Shevlyagin, Evgeny Modin, Saulius Juodkazis, Evgeny L. Gurevich, Aleksandr A. Kuchmizhak / Deep Subwavelength Laser-Induced Periodic Surface Structures on Silicon as a Novel Multifunctional Biosensing Platform // ACS Appl. Mater. Interfaces 2021, 13, 54551−54560
2022. A.V. Shevlyagin et al. Mg2Si is the new black: Introducing a black silicide with >95% average absorption at 200–1800 nm wavelengths // Applied Surface Science. - 2022. - V. 602. - PP. 154321.
2023.
2022. Gurbatov, S.; Puzikov, V.; Modin, E.; Shevlyagin, A.; Gerasimenko, A.; Mitsai, E.; Kulinich, S.A.; Kuchmizhak, A. Ag-Decorated Si Microspheres Produced by Laser Ablation in Liquid: All-in-One Temperature-Feedback SERS-Based Platform for Nanosensing. Materials 2022, 15, 8091
2020.
2020.
2017.
2020.
2018.
2022. Stanislav O. Gurbatov, Vladislav Puzikov, Artem Cherepakhin, Eugeny Mitsai, Natalie Tarasenka, Alexander Shevlyagin, Aleksandr Sergeev, Sergei A. Kulinich, Aleksandr A. Kuchmizhak / Hybrid Au@Si microspheres produced via laser irradiation in liquid for nonlinear photonics // Optics & Laser Technology 2022, 147, 107666.
2017.
2023.
2021.