|
|
Publications in Math-Net.Ru |
Citations |
|
2023 |
1. |
V. S. Krasnoukhov, M. V. Zagidullin, V. N. Azyazov, A. M. Mebel, “Mechanism of formation of four-ring polycyclic aromatic hydrocarbons in the self-recombination of indenyl”, Fizika Goreniya i Vzryva, 59:2 (2023), 31–39 ; Combustion, Explosion and Shock Waves, 59:2 (2023), 151–158 |
|
2017 |
2. |
M. V. Zagidullin, N. A. Khvatov, M. S. Malyshev, V. N. Azyazov, “Dissociation of iodine molecules and singlet oxygen generation in O<sub>2</sub>–I<sub>2</sub> mixture induced by 1315-nm laser radiation”, Kvantovaya Elektronika, 47:10 (2017), 932–934 [Quantum Electron., 47:10 (2017), 932–934 ] |
1
|
|
2016 |
3. |
M. V. Zagidullin, N. A. Khvatov, M. S. Malyshev, M. I. Svistun, “Experimental results on the dissociation of molecular iodine in the presence of singlet oxygen molecules”, Kvantovaya Elektronika, 46:8 (2016), 706–712 [Quantum Electron., 46:8 (2016), 706–712 ] |
1
|
|
2015 |
4. |
M. V. Zagidullin, M. S. Malyshev, V. N. Azyazov, “Kinetics of an oxygen-iodine active medium with iodine atoms optically pumped on the <sup>2</sup>P<sub>1/2</sub>–<sup>2</sup>P<sub>3/2</sub> transition”, Kvantovaya Elektronika, 45:8 (2015), 720–724 [Quantum Electron., 45:8 (2015), 720–724 ] |
10
|
|
2011 |
5. |
M. V. Zagidullin, N. A. Khvatov, A. Yu. Nyagashkin, “Kinetics of O<sub>2</sub>(<sup>1</sup>Σ) formation in the reaction O<sub>2</sub>(<sup>1</sup>Δ) + O<sub>2</sub>(<sup>1</sup>Δ) → O<sub>2</sub>(<sup>1</sup>Σ) + O<sub>2</sub>(<sup>3</sup>Σ)”, Kvantovaya Elektronika, 41:2 (2011), 135–138 [Quantum Electron., 41:2 (2011), 135–138 ] |
7
|
|
2010 |
6. |
M. V. Zagidullin, N. A. Khvatov, “Kinetics of O<sub>2</sub>(<sup>1</sup>Δ) self-quenching in the O<sub>2</sub> — O<sub>2</sub>(<sup>1</sup>Δ) — H<sub>2</sub>O gas mixture”, Kvantovaya Elektronika, 40:9 (2010), 800–803 [Quantum Electron., 40:9 (2010), 800–803 ] |
3
|
7. |
M. V. Zagidullin, “Nonequilibrium population of the first vibrational level of O<sub>2</sub>(<sup>1</sup>Σ) molecules in O<sub>2</sub> — O<sub>2</sub>(<sup>1</sup>Δ) — H<sub>2</sub>O gas flow at the output of chemical singlet-oxygen generator”, Kvantovaya Elektronika, 40:9 (2010), 794–799 [Quantum Electron., 40:9 (2010), 794–799 ] |
6
|
|
2008 |
8. |
M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, “Centrifugal bubble O<sub>2</sub> (<sup>1</sup>Δ) gas generator with a total pressure of 100 Torr”, Kvantovaya Elektronika, 38:8 (2008), 794–800 [Quantum Electron., 38:8 (2008), 794–800 ] |
6
|
|
2005 |
9. |
M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, “Oxygen—iodine ejector laser with a centrifugal bubbling singlet-oxygen generator”, Kvantovaya Elektronika, 35:10 (2005), 907–908 [Quantum Electron., 35:10 (2005), 907–908 ] |
11
|
|
2002 |
10. |
M. V. Zagidullin, V. D. Nikolaev, N. Yu. Palina, M. I. Svistun, N. A. Khvatov, “Effect of the solution temperature in a singlet-oxygen generator on the formation of active medium in an ejector oxygen — iodine laser”, Kvantovaya Elektronika, 32:2 (2002), 101–106 [Quantum Electron., 32:2 (2002), 101–106 ] |
1
|
|
2001 |
11. |
M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, B. T. Anderson, R. F. Tate, G. D. Hager, “Amplification and gas-dynamic parameters of the active oxygen–iodine medium produced by an ejector nozzle unit”, Kvantovaya Elektronika, 31:8 (2001), 678–682 [Quantum Electron., 31:8 (2001), 678–682 ] |
3
|
12. |
M. V. Zagidullin, V. D. Nikolaev, “Calculation of the mixing chamber of an ejector chemical oxygen – iodine laser”, Kvantovaya Elektronika, 31:6 (2001), 510–514 [Quantum Electron., 31:6 (2001), 510–514 ] |
2
|
13. |
M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, “Temperature dependence of the collision broadening of the <sup>2</sup><i>P</i><sub>1/2</sub> – <sup>2</sup><i>P</i><sub>3/2</sub> line of atomic iodine”, Kvantovaya Elektronika, 31:4 (2001), 373–376 [Quantum Electron., 31:4 (2001), 373–376 ] |
14. |
M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, G. D. Hager, T. J. Madden, “Efficient chemical oxygen – iodine laser with a high total pressure of the active medium”, Kvantovaya Elektronika, 31:1 (2001), 30–34 [Quantum Electron., 31:1 (2001), 30–34 ] |
8
|
|
2000 |
15. |
M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, “Supersonic oxygen — iodine 1.4-kW laser with a 5 cm gain length and a nitrogen-diluted active medium”, Kvantovaya Elektronika, 30:2 (2000), 161–166 [Quantum Electron., 30:2 (2000), 161–166 ] |
7
|
|
1999 |
16. |
M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, “Efficient chemical oxygen–iodine laser with longitudinal flow of the active medium”, Kvantovaya Elektronika, 26:2 (1999), 114–116 [Quantum Electron., 29:2 (1999), 114–116 ] |
2
|
|
1998 |
17. |
M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, “Comparative characteristics of subsonic and supersonic oxygen–iodine lasers”, Kvantovaya Elektronika, 25:5 (1998), 413–415 [Quantum Electron., 28:5 (1998), 400–402 ] |
5
|
|
1997 |
18. |
V. N. Azyazov, M. V. Zagidullin, V. D. Nikolaev, V. S. Safonov, “Chemical oxygen — iodine laser with mixing of supersonic jets”, Kvantovaya Elektronika, 24:6 (1997), 491–494 [Quantum Electron., 27:6 (1997), 477–480 ] |
6
|
19. |
M. V. Zagidullin, V. D. Nikolaev, “Gain saturation and the efficiency of energy conversion into radiation in a supersonic oxygen — iodine laserwith a stable cavity”, Kvantovaya Elektronika, 24:5 (1997), 423–428 [Quantum Electron., 27:5 (1997), 411–416 ] |
5
|
20. |
M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, N. I. Ufimtsev, “Highly efficient supersonic chemical oxygen — iodine laser with a chlorine flow rate of 10 mmol s<sup>–1</sup>”, Kvantovaya Elektronika, 24:3 (1997), 201–205 [Quantum Electron., 27:3 (1997), 195–199 ] |
19
|
|
1995 |
21. |
V. N. Azyazov, M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, “Oxygen–iodine laser with a drop-jet generator of O<sub>2</sub>(<sup>1</sup><i>Δ</i>) operating at pressures up to 90 Torr”, Kvantovaya Elektronika, 22:5 (1995), 443–445 [Quantum Electron., 25:5 (1995), 418–420 ] |
9
|
|
1994 |
22. |
V. N. Azyazov, M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, “Transport of high-pressure O<sub>2</sub> (<sup>1</sup>Δ)”, Kvantovaya Elektronika, 21:3 (1994), 247–249 [Quantum Electron., 24:3 (1994), 229–232 ] |
1
|
23. |
V. N. Azyazov, M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, “Jet O<sub>2</sub>(#delta_1#) generator with oxygen pressures up to 13.3 kPa”, Kvantovaya Elektronika, 21:2 (1994), 129–132 [Quantum Electron., 24:2 (1994), 120–123 ] |
14
|
24. |
M. V. Zagidullin, V. D. Nikolaev, M. I. Svistun, “Compact oxygen-iodine laser with a thermally insulated jet singlet–oxygen generator”, Kvantovaya Elektronika, 21:1 (1994), 23–24 [Quantum Electron., 24:1 (1994), 21–22 ] |
4
|
|
1991 |
25. |
M. V. Zagidullin, N. V. Erasov, A. Yu. Kurov, V. D. Nikolaev, M. I. Svistun, N. A. Khvatov, “An oxygen–iodine laser utilizing a high-pressure O<sub>2</sub> (<sup>1</sup>Δ) generator”, Kvantovaya Elektronika, 18:12 (1991), 1417–1418 [Sov J Quantum Electron, 21:12 (1991), 1303–1304 ] |
2
|
26. |
M. V. Zagidullin, A. Yu. Kurov, N. L. Kupriyanov, V. D. Nikolaev, M. I. Svistun, N. V. Erasov, “Highly efficient jet O<sub>2</sub> (<sup>1</sup>Δ) generator”, Kvantovaya Elektronika, 18:7 (1991), 826–832 [Sov J Quantum Electron, 21:7 (1991), 747–753 ] |
21
|
|
1989 |
27. |
N. F. Balan, R. M. Gizatullin, M. V. Zagidullin, A. Yu. Kurov, V. D. Nikolaev, V. M. Pichkasov, M. I. Svistun, “Investigation of a jet generator of O<sub><font size=-1>2</font></sub>(<sup><font size=-1>1</font></sup>Δ)”, Kvantovaya Elektronika, 16:11 (1989), 2197–2200 [Sov J Quantum Electron, 19:11 (1989), 1412–1415 ] |
6
|
28. |
M. V. Zagidullin, A. P. Zaikin, V. I. Igoshin, “Control of the duration of optical pulses from an oxygen–iodine chemical laser”, Kvantovaya Elektronika, 16:4 (1989), 722–727 [Sov J Quantum Electron, 19:4 (1989), 472–475 ] |
|
1988 |
29. |
R. M. Gizatullin, M. V. Zagidullin, A. P. Zaikin, V. I. Igoshin, N. L. Kupriyanov, A. Yu. Kurov, V. D. Nikolaev, V. M. Pichkasov, A. L. Petrov, M. I. Svistun, “Relaxation of the energy stored in an oxygen–iodine active medium containing bound iodine”, Kvantovaya Elektronika, 15:10 (1988), 2078–2086 [Sov J Quantum Electron, 18:10 (1988), 1303–1308 ] |
30. |
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 ] |
|
1987 |
31. |
M. V. Zagidullin, V. I. Igoshin, N. L. Kupriyanov, “Water vapor content in the active medium of an oxygen–iodine chemical laser”, Kvantovaya Elektronika, 14:3 (1987), 516–523 [Sov J Quantum Electron, 17:3 (1987), 320–324 ] |
7
|
32. |
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 ] |
|
1986 |
33. |
N. G. Basov, M. V. Zagidullin, V. I. Igoshin, V. A. Katulin, N. L. Kupriyanov, “Active medium of a chemical oxygen-iodine laser”, Kvantovaya Elektronika, 13:4 (1986), 787–796 [Sov J Quantum Electron, 16:4 (1986), 510–516 ] |
|
1984 |
34. |
M. V. Zagidullin, V. I. Igoshin, N. L. Kupriyanov, “Kinetics of saturation of the active medium of an oxygen-iodine laser”, Kvantovaya Elektronika, 11:7 (1984), 1379–1389 [Sov J Quantum Electron, 14:7 (1984), 930–936 ] |
13
|
35. |
M. V. Zagidullin, V. I. Igoshin, N. L. Kupriyanov, “Influence of translational and hyperfine relaxation on the energy characteristics of an oxygen-iodine laser”, Kvantovaya Elektronika, 11:2 (1984), 382–385 [Sov J Quantum Electron, 14:2 (1984), 259–261 ] |
36. |
M. V. Zagidullin, V. I. Igoshin, V. A. Katulin, N. L. Kupriyanov, N. N. Yuryshev, “Advantages of pulsed operation of a chemical oxygen-iodine laser”, Kvantovaya Elektronika, 11:1 (1984), 201–203 [Sov J Quantum Electron, 14:1 (1984), 139–140 ] |
6
|
|
1983 |
37. |
M. V. Zagidullin, V. I. Igoshin, V. A. Katulin, N. L. Kupriyanov, “Possibility of using an atomizer in a chemical generator of singlet oxygen for an oxygen–iodine laser”, Kvantovaya Elektronika, 10:4 (1983), 797–802 [Sov J Quantum Electron, 13:4 (1983), 494–497 ] |
8
|
38. |
M. V. Zagidullin, V. I. Igoshin, V. A. Katulin, N. L. Kupriyanov, “Possibility of operation of a chemical oxygen–iodine laser without a cooled trap”, Kvantovaya Elektronika, 10:1 (1983), 131–132 [Sov J Quantum Electron, 13:1 (1983), 75–76 ] |
7
|
|
1982 |
39. |
M. V. Zagidullin, V. I. Igoshin, V. A. Katulin, N. L. Kupriyanov, “Numerical modeling of a chemical oxygen–iodine laser”, Kvantovaya Elektronika, 9:9 (1982), 1899–1901 [Sov J Quantum Electron, 12:9 (1982), 1235–1237 ] |
2
|
40. |
L. G. Vinogradova, M. V. Zagidullin, V. I. Igoshin, V. A. Katulin, N. L. Kupriyanov, “Analysis of the energetics of a chemical oxygen–iodine laser”, Kvantovaya Elektronika, 9:6 (1982), 1193–1198 [Sov J Quantum Electron, 12:6 (1982), 752–755 ] |
6
|
|
Organisations |
|
|
|
|