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Nevdakh, Vladimir Vladimirovich

Statistics Math-Net.Ru
Total publications: 14
Scientific articles: 14

Number of views:
This page:178
Abstract pages:1630
Full texts:1034
References:49
Professor
Doctor of physico-mathematical sciences
E-mail:
   
Main publications:
  • nevdakh@dragon.bas-net.by (staryi)

https://www.mathnet.ru/eng/person66705
List of publications on Google Scholar
List of publications on ZentralBlatt

Publications in Math-Net.Ru Citations
2018
1. K. I. Arshinov, O. N. Krapivnaya, V. V. Nevdakh, S. R. Syrtsov, V. N. Shut, “Collisional broadening of $\mathrm{CO}_{2}$ transition lines $10^{0}0$$00^{0}1$ by inert gas atoms at $300$$700$K”, Optics and Spectroscopy, 125:1 (2018),  5–8  mathnet  elib; Optics and Spectroscopy, 125:1 (2018), 1–4 2
2010
2. K. I. Arshinov, M. K. Arshinov, V. V. Nevdakh, “On the temperature dependence of collisional linewidths of the 10<sup>0</sup>0 — 00<sup>0</sup>1 laser transition in the CO<sub>2</sub> molecule”, Kvantovaya Elektronika, 40:7 (2010),  629–632  mathnet  elib [Quantum Electron., 40:7 (2010), 629–632  isi  scopus] 3
2007
3. V. V. Nevdakh, M. Ganjali, K. I. Arshinov, “On the temperature model of CO<sub>2</sub> lasers”, Kvantovaya Elektronika, 37:3 (2007),  243–247  mathnet  elib [Quantum Electron., 37:3 (2007), 243–247  isi  scopus] 2
2001
4. V. V. Nevdakh, “The effect of temperature on the creation of population inversion in the active media of electric-discharge CO<sub>2</sub> lasers”, Kvantovaya Elektronika, 31:6 (2001),  525–528  mathnet [Quantum Electron., 31:6 (2001), 525–528  isi] 3
1999
5. V. V. Nevdakh, “Limitation of the output power of cw electric-discharge CO<sub>2</sub> lasers”, Kvantovaya Elektronika, 27:1 (1999),  9–12  mathnet [Quantum Electron., 29:4 (1999), 291–294  isi] 1
1998
6. K. I. Arshinov, N. S. Leshenyuk, V. V. Nevdakh, “Calculation of the vibrational temperatures and populations of the laser-active levels of CO<sub>2</sub> from the spectral distribution of the gain”, Kvantovaya Elektronika, 25:8 (1998),  679–682  mathnet [Quantum Electron., 28:8 (1998), 659–662  isi] 4
1996
7. V. V. Nevdakh, “Diagnostics of active media of CO<sub>2</sub> lasers by the laser spectrograph method”, Kvantovaya Elektronika, 23:2 (1996),  191–192  mathnet [Quantum Electron., 26:2 (1996), 187–188  isi]
8. V. V. Nevdakh, O. L. Gaiko, L. N. Orlov, “New operational regimes of a CO<sub>2</sub> laser with an intracavity saturable absorber”, Kvantovaya Elektronika, 23:1 (1996),  57–58  mathnet [Quantum Electron., 26:1 (1996), 55–56  isi]
1994
9. O. L. Gaĭko, L. A. Kotomtseva, V. V. Nevdakh, L. N. Orlov, A. M. Samson, “Dynamics of operation of a CO<sub>2</sub> laser with methanol and ethanol vapours as intracavity saturable absorbers”, Kvantovaya Elektronika, 21:7 (1994),  655–659  mathnet [Quantum Electron., 24:7 (1994), 603–607  isi] 2
1985
10. V. V. Nevdakh, “Determination of vibrational temperatures in the active media of CO<sub>2</sub> lasers”, Kvantovaya Elektronika, 12:12 (1985),  2437–2441  mathnet [Sov J Quantum Electron, 15:12 (1985), 1610–1613  isi] 1
11. V. V. Nevdakh, “Loss of vibrational equilibrium between CO<sub>2</sub> molecular levels coupled by a Fermi resonance in amplifying media”, Kvantovaya Elektronika, 12:6 (1985),  1324–1326  mathnet [Sov J Quantum Electron, 15:6 (1985), 881–883  isi]
1984
12. V. V. Nevdakh, “Spontaneous emission probabilities and collisional line widths of 00<sup>0</sup>1–[10<sup>0</sup>0, 02<sup>0</sup>0]<sub>I,II</sub> lasing transitions in the CO<sub>2</sub> molecule”, Kvantovaya Elektronika, 11:8 (1984),  1622–1627  mathnet [Sov J Quantum Electron, 14:8 (1984), 1091–1094  isi] 5
1983
13. V. V. Nevdakh, N. S. Leshenyuk, L. N. Orlov, “Optimization of a resonator of a cw tunable CO<sub>2</sub> laser”, Kvantovaya Elektronika, 10:7 (1983),  1485–1488  mathnet [Sov J Quantum Electron, 13:7 (1983), 969–970  isi]
1982
14. V. V. Elov, V. A. Kuklin, N. S. Leshenyuk, V. V. Nevdakh, “Investigation of the active medium in a fast-flow closedcycle industrial CO<sub>2</sub> laser”, Kvantovaya Elektronika, 9:8 (1982),  1558–1565  mathnet [Sov J Quantum Electron, 12:8 (1982), 999–1003  isi] 2

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