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Kurbasov, Sergei Vladislavovich

Statistics Math-Net.Ru
Total publications: 11
Scientific articles: 11

Number of views:
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Abstract pages:1267
Full texts:662

http://www.mathnet.ru/eng/person87703
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Publications in Math-Net.Ru
2000
1. S. V. Kurbasov, P. B. Sergeev, “Modelling of processes responsible for nonlinear absorption of UV laser radiation in ionic crystals”, Kvantovaya Elektronika, 30:8 (2000),  703–709  mathnet [Quantum Electron., 30:8 (2000), 703–709  isi]
1998
2. A. Z. Grasyuk, S. V. Kurbasov, L. L. Losev, A. P. Lutsenko, A. A. Kaminskii, V. B. Semenov, “Determination of the Raman gain coefficient in leucosapphire”, Kvantovaya Elektronika, 25:2 (1998),  170–174  mathnet [Quantum Electron., 28:2 (1998), 162–166  isi]
3. A. A. Antipov, A. Z. Grasyuk, S. V. Efimovskii, S. V. Kurbasov, L. L. Losev, V. I. Soskov, “Increase in the temperature of a laser plasma formed by two-frequency UV — IR irradiation of metal targets”, Kvantovaya Elektronika, 25:1 (1998),  31–35  mathnet [Quantum Electron., 28:1 (1998), 29–32  isi]
1996
4. S. V. Efimovskii, S. V. Kurbasov, A. V. Novichkov, K. K. Pal'chikova, “Influence of the parameters of a Fabry — Perot etalon on the output characteristics of a narrow-band long-optical-pulse XeCl laser”, Kvantovaya Elektronika, 23:7 (1996),  615–619  mathnet [Quantum Electron., 26:7 (1996), 599–603  isi]
1995
5. S. V. Efimovskii, A. K. Zhigalkin, S. V. Kurbasov, “Gain spectra of a long-pulse XeCl laser, measured in the range 307.5–308.8 nm with a resolution of 1 cm<sup>-1</sup>”, Kvantovaya Elektronika, 22:5 (1995),  455–460  mathnet [Quantum Electron., 25:5 (1995), 430–435  isi]
1993
6. S. V. Efimovskii, A. K. Zhigalkin, Yu. I. Karev, S. V. Kurbasov, “Generation of trains of ultrashort (100-ps) pulses continuously tunable over the interval 307.6–308.6 nm by a long-pulse XeCl laser”, Kvantovaya Elektronika, 20:11 (1993),  1087–1094  mathnet [Quantum Electron., 23:11 (1993), 947–953  isi]
1992
7. S. V. Efimovskii, A. K. Zhigalkin, Yu. I. Karev, S. V. Kurbasov, “Continuous tuning of the emission frequency of an XeCl laser emitting long pulses in the range 307.00–308.93 nm”, Kvantovaya Elektronika, 19:6 (1992),  525–526  mathnet [Sov J Quantum Electron, 22:6 (1992), 481–482  isi]
1991
8. S. V. Efimovskii, A. K. Zhigalkin, Yu. I. Karev, S. V. Kurbasov, “Stimulated emission and amplification characteristics of an excimer XeCl laser emitting pulses of 0.5 μs duration”, Kvantovaya Elektronika, 18:12 (1991),  1407–1412  mathnet [Sov J Quantum Electron, 21:12 (1991), 1293–1298  isi]
1990
9. A. Z. Grasyuk, S. V. Efimovskii, A. K. Zhigalkin, Yu. I. Karev, S. V. Kurbasov, “Long-pulse XeCl laser operating under active mode-locking conditions”, Kvantovaya Elektronika, 17:1 (1990),  35–39  mathnet [Sov J Quantum Electron, 20:1 (1990), 27–31  isi]
1989
10. A. Z. Grasyuk, S. V. Efimovskii, A. K. Zhigalkin, Yu. I. Karev, S. V. Kurbasov, “Generation of a train of 150-ps pulses under conditions of active mode locking in a long-pulse XeCl laser”, Kvantovaya Elektronika, 16:3 (1989),  411–414  mathnet [Sov J Quantum Electron, 19:3 (1989), 274–275  isi]
1985
11. M. Akhrarov, B. I. Vasil'ev, A. Z. Grasyuk, S. V. Efimovskii, S. V. Kurbasov, “Continuously tunable Raman NH<sub>3</sub> laser pumped by the 9<i>R</i>(16) CO<sub>2</sub> laser line”, Kvantovaya Elektronika, 12:7 (1985),  1414–1419  mathnet [Sov J Quantum Electron, 15:7 (1985), 935–938  isi]

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