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Publications in Math-Net.Ru |
Citations |
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2022 |
1. |
V. F. Tarasenko, E. Kh. Baksht, N. P. Vinogradov, A. V. Kozyrev, A. S. Kokovin, V. Yu. Kozhevnikov, “On the mechanism of generation of Trichel pulses in atmospheric air”, Pis'ma v Zh. Èksper. Teoret. Fiz., 115:11 (2022), 710–716 ; JETP Letters, 115:11 (2022), 667–672 |
8
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2021 |
2. |
V. F. Tarasenko, E. Kh. Baksht, M. V. Erofeev, A. G. Burachenko, “Spectral and amplitude-time characteristics of Cherenkov radiation upon excitation of transparent materials by an electron beam”, Optics and Spectroscopy, 129:5 (2021), 569–598 ; Optics and Spectroscopy, 129:7 (2021), 707–736 |
5
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3. |
V. F. Tarasenko, E. Kh. Baksht, M. V. Erofeev, “Vavilov–Cherenkov radiation and pulsed cathodoluminescence in poly(methyl methacrylate) excited by a subnanosecond electron beam”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 47:6 (2021), 7–10 ; Tech. Phys. Lett., 47:4 (2021), 313–316 |
2
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2019 |
4. |
V. F. Tarasenko, V. S. Kuznetsov, V. A. Panarin, V. S. Skakun, E. A. Sosnin, E. Kh. Baksht, “Role of streamers in the formation of a corona discharge in a highly nonuniform electric field”, Pis'ma v Zh. Èksper. Teoret. Fiz., 110:1 (2019), 72–77 ; JETP Letters, 110:1 (2019), 85–89 |
14
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5. |
E. Kh. Baksht, A. V. Vukolov, M. V. Erofeev, G. A. Naumenko, A. P. Potylitsyn, V. F. Tarasenko, A. G. Burachenko, M. V. Shevelev, “Cherenkov radiation in the visible and ultraviolet spectral ranges from 6-MeV electrons passing through a quartz plate”, Pis'ma v Zh. Èksper. Teoret. Fiz., 109:9 (2019), 584–588 ; JETP Letters, 109:9 (2019), 564–568 |
13
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6. |
M. I. Lomaev, V. F. Tarasenko, E. Kh. Baksht, “Effect of air pressure on parameters of beam current and X-ray radiation generated in a gas diode”, Zhurnal Tekhnicheskoi Fiziki, 89:8 (2019), 1271–1275 ; Tech. Phys., 64:8 (2019), 1200–1204 |
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7. |
E. Kh. Baksht, K. P. Artemov, A. G. Burachenko, V. F. Tarasenko, “A determination of the relationship between energies of Vavilov–Cherenkov radiation and cathodoluminescence excited by an electron beam in diamond”, Optics and Spectroscopy, 127:4 (2019), 642–647 ; Optics and Spectroscopy, 127:4 (2019), 694–699 |
2
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2017 |
8. |
E. A. Sosnin, E. Kh. Baksht, V. A. Panarin, V. S. Skakun, V. F. Tarasenko, “Ministarters and mini blue jets in air and nitrogen at a pulse-periodic discharge in a laboratory experiment”, Pis'ma v Zh. Èksper. Teoret. Fiz., 105:10 (2017), 600–604 ; JETP Letters, 105:10 (2017), 641–645 |
13
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9. |
V. I. Oleshko, E. Kh. Baksht, A. G. Burachenko, V. F. Tarasenko, “On the nature of emissions of polymethyl methacrylate excited by an electron beam of subnanosecond or nanosecond duration”, Zhurnal Tekhnicheskoi Fiziki, 87:2 (2017), 271–276 ; Tech. Phys., 62:2 (2017), 299–304 |
6
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2016 |
10. |
E. A. Sosnin, V. S. Skakun, V. A. Panarin, D. S. Pechenitsin, V. F. Tarasenko, E. Kh. Baksht, “Phenomenon of apokamp discharge”, Pis'ma v Zh. Èksper. Teoret. Fiz., 103:12 (2016), 857–860 ; JETP Letters, 103:12 (2016), 761–764 |
30
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2015 |
11. |
V. F. Tarasenko, E. K. Baksht, D. V. Beloplotov, A. G. Burachenko, I. D. Kostyrya, M. I. Lomaev, D. V. Rybka, D. A. Sorokin, “On the parameters of runaway electron beams and on electrons with an “anomalous” energy at a subnanosecond breakdown of gases at atmospheric pressure”, Pis'ma v Zh. Èksper. Teoret. Fiz., 102:6 (2015), 388–392 ; JETP Letters, 102:6 (2015), 350–354 |
16
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12. |
E. Kh. Baksht, A. G. Burachenko, M. I. Lomaev, A. N. Panchenko, V. F. Tarasenko, “Repetitively pulsed UV radiation source based on a run-away electron preionised diffuse discharge in nitrogen”, Kvantovaya Elektronika, 45:4 (2015), 366–370 [Quantum Electron., 45:4 (2015), 366–370 ] |
12
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2012 |
13. |
E. Kh. Baksht, V. F. Tarasenko, Yu. V. Shut'ko, M. V. Erofeev, “Point-like pulse-periodic UV radiation source with a short pulse duration”, Kvantovaya Elektronika, 42:2 (2012), 153–156 [Quantum Electron., 42:2 (2012), 153–156 ] |
17
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2011 |
14. |
V. F. Tarasenko, A. E. Tel'minov, A. G. Burachenko, D. V. Rybka, E. Kh. Baksht, M. I. Lomaev, A. N. Panchenko, P. O. Vil'tovskii, “Lasing from the domain of collision of ionisation waves produced due to electric field concentration at electrodes with a small radius of curvature”, Kvantovaya Elektronika, 41:12 (2011), 1098–1103 [Quantum Electron., 41:12 (2011), 1098–1103 ] |
7
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2010 |
15. |
M. V. Erofeev, E. Kh. Baksht, V. F. Tarasenko, Yu. V. Shut'ko, “Miniature UV lamp excited by subnanosecond voltage pulses”, Kvantovaya Elektronika, 40:6 (2010), 561–564 [Quantum Electron., 40:6 (2010), 561–564 ] |
14
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2009 |
16. |
E. Kh. Baksht, A. G. Burachenko, V. F. Tarasenko, “lasing in nitrogen pumped by a runaway-electron-preionised diffuse discharge”, Kvantovaya Elektronika, 39:12 (2009), 1107–1111 [Quantum Electron., 39:12 (2009), 1107–1111 ] |
10
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2007 |
17. |
M. I. Lomaev, G. A. Mesyats, D. V. Rybka, V. F. Tarasenko, E. Kh. Baksht, “High-power short-pulse xenon dimer spontaneous radiation source”, Kvantovaya Elektronika, 37:6 (2007), 595–596 [Quantum Electron., 37:6 (2007), 595–596 ] |
29
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2006 |
18. |
E. Kh. Baksht, M. I. Lomaev, D. V. Rybka, V. F. Tarasenko, “Study of emission of a volume nanosecond discharge plasma in xenon, krypton and argon at high pressures”, Kvantovaya Elektronika, 36:6 (2006), 576–580 [Quantum Electron., 36:6 (2006), 576–580 ] |
48
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2005 |
19. |
E. Kh. Baksht, M. I. Lomaev, A. N. Panchenko, D. V. Rybka, V. F. Tarasenko, M. Krishnan, J. Thompson, “High-power spontaneous UV radiation source and its excitation regimes”, Kvantovaya Elektronika, 35:7 (2005), 605–610 [Quantum Electron., 35:7 (2005), 605–610 ] |
3
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2004 |
20. |
S. B. Alekseev, E. Kh. Baksht, I. D. Kostyrya, A. N. Panchenko, V. M. Orlovskii, V. F. Tarasenko, “UV lasers on N<sub>2</sub>–SF<sub>6</sub> and N<sub>2</sub>–NF<sub>3</sub> mixtures pumped by transverse and longitudional discharges”, Kvantovaya Elektronika, 34:11 (2004), 1033–1039 [Quantum Electron., 34:11 (2004), 1033–1039 ] |
2
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2003 |
21. |
A. N. Panchenko, V. M. Orlovskii, V. F. Tarasenko, E. Kh. Baksht, “Efficient oscillation regimes of an HF laser pumped by a nonchain chemical reaction initiated by a self-sustained discharge”, Kvantovaya Elektronika, 33:5 (2003), 401–407 [Quantum Electron., 33:5 (2003), 401–407 ] |
7
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2000 |
22. |
E. Kh. Baksht, A. N. Panchenko, V. F. Tarasenko, “Efficient long-pulse XeCl laser with a prepulse formed by an inductive energy storage device”, Kvantovaya Elektronika, 30:6 (2000), 506–508 [Quantum Electron., 30:6 (2000), 506–508 ] |
13
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1998 |
23. |
E. Kh. Baksht, A. N. Panchenko, V. F. Tarasenko, “Nitrogen laser pumped by a longitudinal discharge from inductive and capacitative energy storage units”, Kvantovaya Elektronika, 25:12 (1998), 1087–1090 [Quantum Electron., 28:12 (1998), 1058–1061 ] |
1
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1986 |
24. |
E. Kh. Baksht, G. P. Bazhenov, O. B. Ladyzhenskii, G. A. Mesyats, V. V. Osipov, “Technique for pulse formation of the dense-plasma in vapors of high-pressure metals”, Pisma v Zhurnal Tekhnicheskoi Fiziki, 12:15 (1986), 943–947 |
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1985 |
25. |
G. P. Bazhenov, O. B. Ladyzhenskii, V. V. Osipov, E. Kh. Baksht, S. P. Bugaev, “FORMATION AND TRANSFER OF BAND HEAVY-CURRENT ELECTRON-BEAMS IN PLASMA
DIODES WITH EXPLOSIVE-EMISSION CATHODES”, Zhurnal Tekhnicheskoi Fiziki, 55:6 (1985), 1210–1213 |
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2005 |
26. |
E. Kh. Baksht, M. I. Lomaev, A. N. Panchenko, D. V. Rybka, V. F. Tarasenko, M. Krishnan, J. Thompson, “Errata to the article: High-power spontaneous UV radiation source and its excitation regimes”, Kvantovaya Elektronika, 35:8 (2005), 768 |
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