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Publications in Math-Net.Ru |
Citations |
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2012 |
1. |
S. Yu. Pichugin, “Three-block model of the kinetics of vibrationally excited I<sub>2</sub>(X) molecules in the active media of oxygen — iodine lasers”, Kvantovaya Elektronika, 42:9 (2012), 858–862 [Quantum Electron., 42:9 (2012), 858–862 ] |
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2011 |
2. |
N. E. Molevich, S. Yu. Pichugin, “Pulsed H<sub>2</sub> — F<sub>2</sub> laser with simultaneous lasing on rotational and vibrational—rotational transitions”, Kvantovaya Elektronika, 41:5 (2011), 427–429 [Quantum Electron., 41:5 (2011), 427–429 ] |
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2008 |
3. |
V. N. Azyazov, S. Yu. Pichugin, “Probabilities of the production of vibrationally excited iodine molecules in the reaction I(<sup>2</sup>P<sub>1/2</sub>) + I<sub>2</sub>(X) → I(<sup>2</sup>P<sub>3/2</sub>) + I<sub>2</sub>(X, <i>v</i> > 10)”, Kvantovaya Elektronika, 38:12 (2008), 1101–1104 [Quantum Electron., 38:12 (2008), 1101–1104 ] |
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4. |
S. Yu. Pichugin, “Deactivation rate of I<sub>2</sub> molecules (X, <i>v</i> ≥ 30) in the medium of a chemical oxygen — iodine laser”, Kvantovaya Elektronika, 38:8 (2008), 736–738 [Quantum Electron., 38:8 (2008), 736–738 ] |
9
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5. |
N. E. Molevich, S. Yu. Pichugin, “Emission of a pulsed purely rotational transition chemical H<sub>2</sub> — F<sub>2</sub> laser”, Kvantovaya Elektronika, 38:4 (2008), 330–332 [Quantum Electron., 38:4 (2008), 330–332 ] |
2
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2004 |
6. |
V. N. Azyazov, I. O. Antonov, S. Yu. Pichugin, N. I. Ufimtsev, “Effect of vibrationally excited Î<sub>2</sub>(<i>a</i><sup>1</sup><i>Δ<sub>g</sub></i>) molecules on the parameters of the active medium of an oxygen – iodine laser”, Kvantovaya Elektronika, 34:12 (2004), 1116–1120 [Quantum Electron., 34:12 (2004), 1116–1120 ] |
3
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7. |
V. I. Igoshin, S. Yu. Pichugin, “A pulsed hydrogen fluoride amplifier initiated by vibrational excitation of HF molecules by laser radiation”, Kvantovaya Elektronika, 34:3 (2004), 203–205 [Quantum Electron., 34:3 (2004), 203–205 ] |
1
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8. |
V. I. Igoshin, A. I. Klyukach, S. Yu. Pichugin, “Influence of oxygen on the energy characteristics of a chemical pulsed hydrogen fluoride laser”, Kvantovaya Elektronika, 34:2 (2004), 103–105 [Quantum Electron., 34:2 (2004), 103–105 ] |
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2003 |
9. |
V. N. Azyazov, I. O. Antonov, S. Yu. Pichugin, V. S. Safonov, M. I. Svistun, N. I. Ufimtsev, “Detection of vibrationally excited O<sub>2</sub> in the active medium of a chemical oxygen – iodine laser”, Kvantovaya Elektronika, 33:9 (2003), 811–816 [Quantum Electron., 33:9 (2003), 811–816 ] |
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2002 |
10. |
V. I. Igoshin, S. Yu. Pichugin, I. L. Stukalina, “An H<sub>2</sub> – F<sub>2</sub> amplifier initiated by IR laser radiation in an inhomogeneous working mixture”, Kvantovaya Elektronika, 32:10 (2002), 933–935 [Quantum Electron., 32:10 (2002), 933–935 ] |
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2001 |
11. |
V. N. Azyazov, S. Yu. Pichugin, V. S. Safonov, N. I. Ufimtsev, “Distribution of O<sub>2</sub> molecules over vibrational levels at the output of a singlet-oxygen generator”, Kvantovaya Elektronika, 31:9 (2001), 794–798 [Quantum Electron., 31:9 (2001), 794–798 ] |
7
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12. |
V. I. Igoshin, S. Yu. Pichugin, I. L. Stukalina, “On the possibility of obtaining high energy parameters from an IR-initiated thermal-chain explosion H<sub>2</sub> – F<sub>2</sub> laser”, Kvantovaya Elektronika, 31:2 (2001), 135–138 [Quantum Electron., 31:2 (2001), 135–138 ] |
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2000 |
13. |
V. I. Igoshin, S. Yu. Pichugin, I. L. Stukalina, “Chemical hydrogen fluoride laser on a thermal chain explosion initiated by resonance IR radiation”, Kvantovaya Elektronika, 30:7 (2000), 580–582 [Quantum Electron., 30:7 (2000), 580–582 ] |
1
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1999 |
14. |
M. A. Azarov, V. I. Igoshin, S. Yu. Pichugin, G. A. Troshchinenko, “Spectral and energy characteristics of a pulsed hydrogen fluoride laser and rotational relaxation of HF molecules”, Kvantovaya Elektronika, 29:1 (1999), 21–23 [Quantum Electron., 29:10 (1999), 859–861 ] |
3
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1998 |
15. |
M. A. Azarov, V. A. Drozdov, V. I. Igoshin, V. A. Katulin, A. Yu. Kurov, A. L. Petrov, S. Yu. Pichugin, G. A. Troshchinenko, “Vibrational excitation of HF molecules and initiation of an H<sub>2</sub> — F<sub>2</sub> laser by multiline radiation from a hydrogen fluoride laser”, Kvantovaya Elektronika, 25:5 (1998), 401–404 [Quantum Electron., 28:5 (1998), 388–391 ] |
2
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1997 |
16. |
M. A. Azarov, V. A. Drozdov, V. I. Igoshin, A. Yu. Kurov, A. L. Petrov, S. Yu. Pichugin, G. A. Troshchinenko, “Formation and experimental investigation of a gaseous disperse medium of a pulsed chemical H<sub>2</sub> — F<sub>2</sub> laser initiated by IR radiation”, Kvantovaya Elektronika, 24:11 (1997), 983–986 [Quantum Electron., 27:11 (1997), 953–956 ] |
3
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17. |
V. I. Igoshin, S. Yu. Pichugin, “Generation of the fundamental tone and first overtone radiations in a pulsed H<sub>2</sub> — F<sub>2</sub> laser”, Kvantovaya Elektronika, 24:5 (1997), 477–479 [Quantum Electron., 27:5 (1997), 465–467 ] |
2
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1996 |
18. |
V. I. Igoshin, S. Yu. Pichugin, “New dynamic photon branching regimes in chemical HF lasers with a two-phase active medium”, Kvantovaya Elektronika, 23:4 (1996), 326–330 [Quantum Electron., 26:4 (1996), 318–322 ] |
1
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1994 |
19. |
V. I. Igoshin, S. Yu. Pichugin, “Multilevel model of a pulsed chemical H<sub>2</sub> – F<sub>2</sub> laser and its promising operational modes”, Kvantovaya Elektronika, 21:5 (1994), 417–421 [Quantum Electron., 24:5 (1994), 384–388 ] |
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1993 |
20. |
V. I. Igoshin, S. Yu. Pichugin, “Pumping a KrF excimer laser by a laser discharge induced by an IR laser beam”, Kvantovaya Elektronika, 20:1 (1993), 39–44 [Quantum Electron., 23:1 (1993), 33–37 ] |
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1992 |
21. |
V. I. Igoshin, S. Yu. Pichugin, “Theoretical simulation of lasers utilizing vibrational-rotational transitions in diatomic molecules allowing for anharmonicity and rotational nonequilibrium”, Kvantovaya Elektronika, 19:4 (1992), 372–376 [Sov J Quantum Electron, 22:4 (1992), 337–340 ] |
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1990 |
22. |
V. I. Igoshin, S. Yu. Pichugin, “Feasibility of initiation of pulsed chemical lasers by an optical discharge”, Kvantovaya Elektronika, 17:11 (1990), 1465–1466 [Sov J Quantum Electron, 20:11 (1990), 1373–1374 ] |
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1989 |
23. |
V. I. Igoshin, S. Yu. Pichugin, “Substantiation of the feasibility of developing a purely chemical $H_2-F_2$ laser with evaporation of finely dispersed particles under the action of infrared radiation”, Kvantovaya Elektronika, 16:3 (1989), 437–441 [Sov J Quantum Electron, 19:3 (1989), 289–292 ] |
3
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24. |
V. I. Igoshin, S. Yu. Pichugin, “Influence of SF<sub>6</sub> on the energy characteristics of an H<sub>2</sub>–F<sub>2</sub> chemical laser”, Kvantovaya Elektronika, 16:1 (1989), 50–52 [Sov J Quantum Electron, 19:1 (1989), 31–33 ] |
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1988 |
25. |
M. V. Zagidullin, V. I. Igoshin, S. Yu. Pichugin, “Theoretical analysis of the kinetics of a laser utilizing a mixture of O<sub>2</sub>(<sup>1</sup>Δ) and an iodine aerosol”, Kvantovaya Elektronika, 15:1 (1988), 70–77 [Sov J Quantum Electron, 18:1 (1988), 45–49 ] |
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1987 |
26. |
M. V. Zagidullin, V. I. Igoshin, N. L. Kupriyanov, S. Yu. Pichugin, “Active medium utilizing a mixture of O<sub>2</sub>(<sup>1</sup>Δ) and an iodine aerosol”, Kvantovaya Elektronika, 14:3 (1987), 509–515 [Sov J Quantum Electron, 17:3 (1987), 315–319 ] |
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1985 |
27. |
V. I. Igoshin, S. Yu. Pichugin, “Efficiency of laser heating of particles dispersed in a gas stream”, Kvantovaya Elektronika, 12:10 (1985), 2187–2189 [Sov J Quantum Electron, 15:10 (1985), 1444–1445 ] |
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1983 |
28. |
V. I. Igoshin, S. Yu. Pichugin, “Chemical HF laser initiated by evaporation of fine particles under the action of infrared radiation”, Kvantovaya Elektronika, 10:9 (1983), 1922–1924 [Sov J Quantum Electron, 13:9 (1983), 1278–1280 ] |
29. |
V. I. Igoshin, S. Yu. Pichugin, “Chemical laser amplifier using a photon-branched reaction in an aerosol medium”, Kvantovaya Elektronika, 10:2 (1983), 458–461 [Sov J Quantum Electron, 13:2 (1983), 267–269 ] |
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30. |
V. I. Igoshin, S. Yu. Pichugin, “Formation of free fluorine atoms by laser-collisional initiation of the CH<sub>3</sub>F+F<sub>2</sub> reaction”, Kvantovaya Elektronika, 10:2 (1983), 370–376 [Sov J Quantum Electron, 13:2 (1983), 205–208 ] |
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