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Publications in Math-Net.Ru |
Citations |
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2021 |
1. |
A. A. Akhsakhalyan, S. A. Garakhin, F. A. Dar'In, M. V. Zorina, V. V. Kriventsov, D. D. Pershin, A. E. Pestov, R. S. Pleshkov, V. N. Polkovnikov, Ya. V. Rakshun, N. N. Salashchenko, S. S. Svetokhin, M. V. Svechnikov, D. S. Sorokoletov, V. A. Chernov, N. I. Chkhalo, “Manufacturing and research of mirrors with a wide bandwidth for synchrotron applications”, Zhurnal Tekhnicheskoi Fiziki, 91:10 (2021), 1524–1531 |
2. |
S. A. Garakhin, I. G. Zabrodin, S. Yu. Zuev, A. Ya. Lopatin, A. N. Nechai, A. E. Pestov, A. A. Perekalov, R. S. Pleshkov, V. N. Polkovnikov, N. N. Salashchenko, R. M. Smertin, N. N. Tsybin, N. I. Chkhalo, “Measurements of the absolute values of the radiation intensity in the wavelength range of 6.6–32 nm of stainless steel targets with pulsed laser excitation”, Zhurnal Tekhnicheskoi Fiziki, 91:10 (2021), 1448–1453 |
3. |
S. V. Kuzin, S. A. Bogachev, N. F. Erkhova, A. A. Pertsov, I. P. Loboda, A. A. Reva, A. A. Kholodilov, A. S. Ulyanov, A. S. Kirichenko, I. V. Malyshev, A. E. Pestov, V. N. Polkovnikov, M. N. Toropov, N. N. Tsybin, N. I. Chkhalo, V. A. Kryukovskiy, V. N. Gorev, A. A. Doroshkin, A. M. Zadorozhny, V. Yu. Prokopyev, “Solar VUV telescope for nanosatellites”, Zhurnal Tekhnicheskoi Fiziki, 91:10 (2021), 1441–1447 |
1
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4. |
A. V. Vodopyanov, S. A. Garakhin, I. G. Zabrodin, S. Yu. Zuev, A. Ya. Lopatin, A. N. Nechai, A. E. Pestov, A. A. Perekalov, R. S. Pleshkov, V. N. Polkovnikov, N. N. Salashchenko, R. M. Smertin, B. A. Ulasevich, N. I. Chkhalo, “Measurements of the absolute intensities of spectral lines of Kr, Ar, and O ions in the wavelength range of 10–18 nm under pulsed laser excitation”, Kvantovaya Elektronika, 51:8 (2021), 700–707 [Quantum Electron., 51:8 (2021), 700–707 ] |
7
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2020 |
5. |
V. N. Polkovnikov, S. A. Garakhin, D. S. Kvashennikov, I. V. Malyshev, N. N. Salashchenko, M. V. Svechnikov, R. M. Smertin, N. I. Chkhalo, “Multilayer Cr/Sc mirrors with improved reflection for the “water transparency window” range”, Zhurnal Tekhnicheskoi Fiziki, 90:11 (2020), 1893–1897 ; Tech. Phys., 65:11 (2020), 1809–1813 |
14
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6. |
R. M. Smertin, V. N. Polkovnikov, N. N. Salashchenko, N. I. Chkhalo, P. A. Yunin, A. L. Trigub, “The microstructure of transition boundaries in multilayer Mo/Be systems”, Zhurnal Tekhnicheskoi Fiziki, 90:11 (2020), 1884–1892 ; Tech. Phys., 65:11 (2020), 1800–1808 |
1
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7. |
S. A. Garakhin, M. M. Barysheva, E. A. Vishnyakov, S. Yu. Zuev, A. S. Kirichenko, S. V. Kuzin, V. N. Polkovnikov, N. N. Salashchenko, M. V. Svechnikov, N. I. Chkhalo, “Broadband mirrors for spectroheliographs at the KORTES sun study facility”, Zhurnal Tekhnicheskoi Fiziki, 90:11 (2020), 1876–1883 ; Tech. Phys., 65:11 (2020), 1792–1799 |
3
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8. |
R. S. Pleshkov, S. Yu. Zuev, V. N. Polkovnikov, N. N. Salashchenko, M. V. Svechnikov, N. I. Chkhalo, P. Jonnard, “The smoothing effect of si layers in multilayer Be/Al mirrors for the 17- to 31-nm range”, Zhurnal Tekhnicheskoi Fiziki, 90:11 (2020), 1870–1875 ; Tech. Phys., 65:11 (2020), 1786–1791 |
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9. |
S. A. Garakhin, M. V. Zorina, S. Yu. Zuev, M. S. Mikhailenko, A. E. Pestov, R. S. Pleshkov, V. N. Polkovnikov, N. N. Salashchenko, N. I. Chkhalo, “Modification and polishing of the holographic diffraction grating grooves by a neutralized Ar ion beam”, Zhurnal Tekhnicheskoi Fiziki, 90:11 (2020), 1864–1869 ; Tech. Phys., 65:11 (2020), 1780–1785 |
10. |
S. V. Kuzin, A. A. Reva, S. A. Bogachev, N. F. Erkhova, N. N. Salashchenko, N. I. Chkhalo, V. N. Polkovnikov, “Application of novel multilayer normal-incidence mirrors for euv solar spectroscopy”, Zhurnal Tekhnicheskoi Fiziki, 90:11 (2020), 1817–1820 ; Tech. Phys., 65:11 (2020), 1736–1739 |
2
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11. |
A. N. Nechai, S. A. Garakhin, A. Ya. Lopatin, V. N. Polkovnikov, D. G. Reunov, N. N. Salashchenko, M. N. Toropov, N. I. Chkhalo, N. N. Tsybin, “Lasing efficiency of krypton ions in the (8–14)-nm band upon pulsed laser excitation”, Kvantovaya Elektronika, 50:4 (2020), 408–413 [Quantum Electron., 50:4 (2020), 408–413 ] |
7
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12. |
M. M. Barysheva, I. V. Malyshev, V. N. Polkovnikov, N. N. Salashchenko, M. V. Svechnikov, N. I. Chkhalo, “Features of multilayer mirror application for focusing and collimating X-rays from inverse Compton scattering sources”, Kvantovaya Elektronika, 50:4 (2020), 401–407 [Quantum Electron., 50:4 (2020), 401–407 ] |
2
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13. |
N. I. Chkhalo, I. V. Malyshev, A. E. Pestov, V. N. Polkovnikov, N. N. Salashchenko, M. N. Toropov, “Diffraction limited X-ray optics: technology, metrology, applications”, UFN, 190:1 (2020), 74–91 ; Phys. Usp., 63:1 (2020), 67–82 |
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2019 |
14. |
R. M. Smertin, S. A. Garakhin, S. Yu. Zuev, A. N. Nechai, V. N. Polkovnikov, N. N. Salashchenko, M. V. Svechnikov, M. G. Sertsu, A. Sokolov, N. I. Chkhalo, F. Schäfers, P. A. Yunin, “Influence of thermal annealing on the properties of multilayer Mo/Be mirrors”, Zhurnal Tekhnicheskoi Fiziki, 89:11 (2019), 1783–1788 ; Tech. Phys., 64:11 (2019), 1692–1697 |
3
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15. |
S. Yu. Zuev, R. S. Pleshkov, V. N. Polkovnikov, N. N. Salashchenko, M. V. Svechnikov, N. I. Chkhalo, F. Schäfers, M. G. Sertsu, A. Sokolov, “Influence of beryllium barrier layers on the properties of Mo/Si multilayer mirrors”, Zhurnal Tekhnicheskoi Fiziki, 89:11 (2019), 1779–1782 ; Tech. Phys., 64:11 (2019), 1688–1691 |
4
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16. |
D. S. Kvashennikov, S. Yu. Zuev, V. N. Polkovnikov, N. N. Salashchenko, N. I. Chkhalo, F. Delmotte, E. Meltchakov, “Multilayer Ag/Y mirrors for the spectral range of 9–11 nm”, Zhurnal Tekhnicheskoi Fiziki, 89:11 (2019), 1774–1778 ; Tech. Phys., 64:11 (2019), 1684–1687 |
2
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17. |
M. M. Barysheva, S. A. Garakhin, S. Yu. Zuev, V. N. Polkovnikov, N. N. Salashchenko, M. V. Svechnikov, R. M. Smertin, N. I. Chkhalo, E. Meltchakov, “Optimization of composition, synthesis, and study of broadband multilayer mirrors for the EUV spectral range”, Zhurnal Tekhnicheskoi Fiziki, 89:11 (2019), 1763–1769 ; Tech. Phys., 64:11 (2019), 1673–1679 |
7
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18. |
N. I. Chkhalo, M. V. Zorina, I. V. Malyshev, A. E. Pestov, V. N. Polkovnikov, N. N. Salashchenko, D. S. Kazakov, A. V. Mil’kov, I. L. Strulya, “Beryllium as a material for thermally stable X-ray mirrors”, Zhurnal Tekhnicheskoi Fiziki, 89:11 (2019), 1686–1691 ; Tech. Phys., 64:11 (2019), 1596–1601 |
6
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19. |
V. N. Polkovnikov, N. I. Chkhalo, E. Meltchakov, F. Delmotte, S. Yu. Zuev, N. N. Salashchenko, M. V. Svechnikov, N. N. Tsybin, “Stable multilayer reflective coatings for $\lambda$(HeI) = 58.4 nm for the kortes solar telescope”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 45:3 (2019), 26–29 ; Tech. Phys. Lett., 45:2 (2019), 85–88 |
7
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20. |
M. M. Barysheva, S. A. Garakhin, S. Yu. Zuev, V. N. Polkovnikov, N. N. Salashchenko, M. V. Svechnikov, N. I. Chkhalo, S. Yulin, “Comparison of approaches in the manufacture of broadband mirrors for the EUV range: aperiodic and stack structures”, Kvantovaya Elektronika, 49:4 (2019), 380–385 [Quantum Electron., 49:4 (2019), 380–385 ] |
11
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2018 |
21. |
P. S. Butorin, Yu. M. Zadiranov, S. Yu. Zuev, S. G. Kalmykov, V. N. Polkovnikov, M. È. Sasin, N. I. Chkhalo, “Absolutely calibrated spectrally resolved measurements of Xe laser plasma radiation intensity in the EUV range”, Zhurnal Tekhnicheskoi Fiziki, 88:10 (2018), 1554–1558 ; Tech. Phys., 63:10 (2018), 1507–1510 |
9
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2017 |
22. |
S. A. Garakhin, I. G. Zabrodin, S. Yu. Zuev, I. A. Kas'kov, A. Ya. Lopatin, A. N. Nechai, V. N. Polkovnikov, N. N. Salashchenko, N. N. Tsybin, N. I. Chkhalo, M. V. Svechnikov, “Laboratory reflectometer for the investigation of optical elements in a wavelength range of 5 – 50 nm: description and testing results”, Kvantovaya Elektronika, 47:4 (2017), 385–392 [Quantum Electron., 47:4 (2017), 385–392 ] |
23
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23. |
S. A. Garakhin, E. N. Meltchakov, V. N. Polkovnikov, N. N. Salashchenko, N. I. Chkhalo, “Effect of structural defects of aperiodic multilayer mirrors on the properties of reflected (sub)femtosecond pulses”, Kvantovaya Elektronika, 47:4 (2017), 378–384 [Quantum Electron., 47:4 (2017), 378–384 ] |
10
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2016 |
24. |
M. V. Zorina, S. Yu. Zuev, M. S. Mikhailenko, A. E. Pestov, V. N. Polkovnikov, N. N. Salashchenko, N. I. Chkhalo, “The diffraction efficiency of echelle gratings increased by ion-beam polishing of groove surfaces”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 42:16 (2016), 34–40 ; Tech. Phys. Lett., 42:8 (2016), 844–847 |
11
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25. |
P. K. Gaikovich, V. N. Polkovnikov, N. N. Salashchenko, N. I. Chkhalo, F. Schäfers, A. Sokolov, “Effect of roughness, deterministic and random errors in film thickness on the reflecting properties of aperiodic mirrors for the EUV range”, Kvantovaya Elektronika, 46:5 (2016), 406–413 [Quantum Electron., 46:5 (2016), 406–413 ] |
8
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26. |
A. N. Nechai, A. E. Pestov, V. N. Polkovnikov, N. N. Salashchenko, M. N. Toropov, N. I. Chkhalo, N. N. Tsybin, A. V. Shcherbakov, “X-ray optical system for imaging laser plumes with a spatial resolution of up to 70 nm”, Kvantovaya Elektronika, 46:4 (2016), 347–352 [Quantum Electron., 46:4 (2016), 347–352 ] |
3
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2012 |
27. |
P. N. Aruev, M. M. Barysheva, B. Ya. Ber, N. V. Zabrodskaya, V. V. Zabrodskii, A. Ya. Lopatin, A. E. Pestov, M. V. Petrenko, V. N. Polkovnikov, N. N. Salashchenko, V. L. Sukhanov, N. I. Chkhalo, “Silicon photodiode with selective Zr/Si coating for extreme ultraviolet spectral range”, Kvantovaya Elektronika, 42:10 (2012), 943–948 [Quantum Electron., 42:10 (2012), 943–948 ] |
26
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2020 |
28. |
V. N. Polkovnikov, N. N. Salashchenko, M. V. Svechnikov, N. I. Chkhalo, “Beryllium-based multilayer X-ray optics”, UFN, 190:1 (2020), 92–106 ; Phys. Usp., 63:1 (2020), 83–95 |
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