Persons
RUS  ENG    JOURNALS   PEOPLE   ORGANISATIONS   CONFERENCES   SEMINARS   VIDEO LIBRARY   PACKAGE AMSBIB  
 
Shiryaev, Vladimir Semenovich

Head Scientist Researcher
Doctor of chemical sciences
E-mail:

https://www.mathnet.ru/eng/person136484
List of publications on Google Scholar

Publications in Math-Net.Ru Citations
2025
1. P. P. Pakholchuk, N. A. Smirnov, N. I. Busleev, D. A. Pomazkin, V. G. Vins, S. I. Kudryashov, V. S. Shiryaev, “Nonlinear optical properties of Ge$_7$Sb$_{93}$ chalcogenide glass as a low-melting immersion medium for femtosecond laser marking of diamonds in the near-infrared range”, Pis'ma v Zh. Èksper. Teoret. Fiz., 121:1 (2025),  24–29  mathnet; JETP Letters, 121:1 (2025), 22–27
2024
2. E. V. Kuzmin, G. K. Krasin, Yu. S. Gulina, P. A. Danilov, D. A. Pomazkin, A. V. Gorevoy, S. V. Kuznetsov, V. V. Voronov, V. Yu. Kovalev, S. I. Kudryashov, A. O. Levchenko, E. V. Karaksina, V. S. Shiryaev, “Structural micromodification of diamond by femtosecond laser pulses through optical contact with a nonlinear highly refractive immersion medium”, Pis'ma v Zh. Èksper. Teoret. Fiz., 119:4 (2024),  267–272  mathnet; JETP Letters, 119:4 (2024), 280–284 2
2023
3. Yu. S. Kuzyutkina, N. Parshina, E. A. Romanova, V. I. Kochubey, M. V. Sukhanov, V. S. Shiryaev, L. A. Ketkova, “Optical properties of Ga–Ge–Sb–Se chalcogenide glasses doped with terbium and dysprosium ions, near the fundamental absorption band edge”, Optics and Spectroscopy, 131:1 (2023),  15–24  mathnet  elib
4. E. A. Romanova, N. Parshina, V. S. Shiryaev, “The influence of the mode intensity profile on the population kinetics of terbium ion levels and the excitation of luminescence in a few-mode chalcogenide fiber”, Kvantovaya Elektronika, 53:7 (2023),  546–555  mathnet [Bull. Lebedev Physics Institute, 50:suppl. 11 (2023), S1225–S1239] 2
2022
5. A. E. Rupasov, P. A. Danilov, A. A. Ionin, N. A. Smirnov, S. I. Kudryashov, R. A. Khmelnitskii, S. N. Shelygina, A. O. Levchenko, V. S. Shiryaev, “Interaction of femtosecond laser radiation with chalcogenide glasses of various compositions”, Optics and Spectroscopy, 130:4 (2022),  550–554  mathnet  elib
2019
6. S. V. Korsakova, E. A. Vinogradova, E. A. Romanova, V. S. Shiryaev, “The use of higher-order modes of chalcogenide fibers for optimizing the method of the mid-IR evanescent wave spectroscopy”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:10 (2019),  17–21  mathnet  elib; Tech. Phys. Lett., 45:5 (2019), 489–493 5
2018
7. S. V. Korsakova, E. A. Romanova, A. P. Velmuzhov, T. V. Kotereva, M. V. Sukhanov, V. S. Shiryaev, “Analysis of characteristics of the sensing elements for the fiber-based evanescent wave spectroscopy in the mid-IR”, Optics and Spectroscopy, 125:3 (2018),  402–410  mathnet  elib; Optics and Spectroscopy, 125:3 (2018), 416–424 8
8. E. A. Romanova, Yu. S. Kuzyutkina, V. S. Shiryaev, S. Guizard, “Investigation of the dynamics of a nonlinear optical response in glassy chalcogenide semiconductors by the pump–probe method”, Kvantovaya Elektronika, 48:3 (2018),  228–234  mathnet  elib [Quantum Electron., 48:3 (2018), 228–234  isi  scopus] 14
1987
9. V. G. Borisevich, G. G. Devyatykh, E. M. Dianov, S. V. Ignat'ev, V. G. Plotnichenko, I. V. Skripachev, M. F. Churbanov, V. A. Shipunov, V. S. Shiryaev, “Low-temperature photoinduced changes of optical losses in fiber lightguides based on chalcogenide glasses”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 13:1 (1987),  35–38  mathnet

Organisations