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Publications in Math-Net.Ru |
Citations |
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2022 |
1. |
V. V. Samarkin, A. G. Alexandrov, I. V. Galaktionov, A. V. Kudryashov, A. N. Nikitin, A. L. Rukosuev, V. V. Toporovsky, Yu. V. Sheldakova, “Large-aperture adaptive optical system for correcting wavefront distortions of a petawatt Ti : sapphire laser beam”, Kvantovaya Elektronika, 52:2 (2022), 187–194 [Quantum Electron., 52:2 (2022), 187–194 ] |
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2021 |
2. |
A. V. Kotov, S. E. Perevalov, M. V. Starodubtsev, R. S. Zemskov, A. G. Alexandrov, I. V. Galaktionov, A. V. Kudryashov, V. V. Samarkin, A. A. Soloviev, “Adaptive system for correcting optical aberrations of high-power lasers with dynamic determination of the reference wavefront”, Kvantovaya Elektronika, 51:7 (2021), 593–596 [Quantum Electron., 51:7 (2021), 593–596 ] |
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2020 |
3. |
A. A. Soloviev, A. V. Kotov, S. E. Perevalov, M. V. Esyunin, M. V. Starodubtsev, A. G. Alexandrov, I. V. Galaktionov, V. V. Samarkin, A. V. Kudryashov, V. N. Ginzburg, A. P. Korobeynikova, A. A. Kochetkov, A. A. Kuzmin, A. A. Shaikin, I. V. Yakovlev, E. A. Khazanov, “Adaptive system for wavefront correction of the PEARL laser facility”, Kvantovaya Elektronika, 50:12 (2020), 1115–1122 [Quantum Electron., 50:12 (2020), 1115–1122 ] |
11
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2018 |
4. |
A. N. Lylova, Yu. V. Sheldakova, A. V. Kudryashov, V. V. Samarkin, “Formation of doughnut and super-Gaussian intensity distributions of laser radiation in the far field using a bimorph mirror”, Kvantovaya Elektronika, 48:1 (2018), 57–61 [Quantum Electron., 48:1 (2018), 57–61 ] |
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2015 |
5. |
V. V. Samarkin, A. G. Aleksandrov, T. Jitsuno, P. N. Romanov, A. L. Rukosuev, A. V. Kudryashov, “Study of a wide-aperture combined deformable mirror for high-power pulsed phosphate glass lasers”, Kvantovaya Elektronika, 45:12 (2015), 1086–1087 [Quantum Electron., 45:12 (2015), 1086–1087 ] |
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2010 |
6. |
A. G. Alexandrov, V. E. Zavalova, A. V. Kudryashov, A. L. Rukosuev, P. N. Romanov, V. V. Samarkin, Yu. V. Sheldakova, “Shack — Hartmann wavefront sensor for measuring the parameters of high-power pulsed solid-state lasers”, Kvantovaya Elektronika, 40:4 (2010), 321–326 [Quantum Electron., 40:4 (2010), 321–326 ] |
45
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1999 |
7. |
Yu. N. Zavalov, L. N. Kaptsov, A. V. Kudryashov, V. V. Samarkin, T. Yu. Cherezova, S. S. Chesnokov, “Formation of a specified intensity distribution of the radiation from an industrial cw CO<sub>2</sub> laser”, Kvantovaya Elektronika, 27:1 (1999), 57–58 [Quantum Electron., 29:4 (1999), 339–340 ] |
1
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1992 |
8. |
L. N. Kaptsov, A. V. Kudryashov, V. V. Samarkin, A. V. Seliverstov, “Control of parameters of solid-state industrial YAG:Nd<sup>3+</sup> laser radiation using methods of adaptive optics. II. Spherical adaptive mirror”, Kvantovaya Elektronika, 19:6 (1992), 579–580 [Sov J Quantum Electron, 22:6 (1992), 533–534 ] |
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1989 |
9. |
S. A. Gnedoĭ, A. V. Kudryashov, V. V. Samarkin, V. P. Yakunin, “Investigation of the possibility of controlling the output power of an industrial CO<sub><font size=-1>2</font></sub> laser by an intracavity adaptive mirror”, Kvantovaya Elektronika, 16:9 (1989), 1839–1840 [Sov J Quantum Electron, 19:9 (1989), 1183–1184 ] |
10. |
S. A. Gnedoĭ, A. V. Kudryashov, V. V. Samarkin, V. P. Yakunin, “Use of an intracavity adaptive mirror in control of the parameters of the radiation emitted from a copper vapor laser”, Kvantovaya Elektronika, 16:9 (1989), 1837–1839 [Sov J Quantum Electron, 19:9 (1989), 1182–1183 ] |
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