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Publications in Math-Net.Ru |
Citations |
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2017 |
1. |
S. D. Velikanov, E. M. Gavrishchuk, N. G. Zakharov, V. I. Kozlovsky, Yu. V. Korostelin, V. I. Lazarenko, A. A. Maneshkin, Yu. P. Podmar'kov, E. V. Saltykov, Ya. K. Skasyrsky, M. P. Frolov, V. S. Tsykin, R. S. Chuvatkin, I. M. Yutkin, “Efficient operation of a room-temperature Fe<sup>2+</sup> : ZnSe laser pumped by a passively Q-switched Er : YAG laser”, Kvantovaya Elektronika, 47:9 (2017), 831–834 [Quantum Electron., 47:9 (2017), 831–834 ] |
8
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2016 |
2. |
S. K. Vartapetov, A. V. Zakhryapa, V. I. Kozlovsky, Yu. V. Korostelin, V. A. Mikhailov, Yu. P. Podmar'kov, I. Yu. Porofeev, D. E. Sviridov, Ya. K. Skasyrsky, M. P. Frolov, I. M. Yutkin, “Study of the formation of a microrelief on ZnSe- and CdSe-crystal surfaces ablated by excimer KrF-laser radiaton”, Kvantovaya Elektronika, 46:10 (2016), 903–910 [Quantum Electron., 46:10 (2016), 903–910 ] |
4
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3. |
S. D. Velikanov, A. E. Dormidonov, N. A. Zaretskiy, S. Yu. Kazantsev, V. I. Kozlovsky, I. G. Kononov, Yu. V. Korostelin, A. A. Maneshkin, Yu. P. Podmar'kov, Ya. K. Skasyrsky, K. N. Firsov, M. P. Frolov, I. M. Yutkin, “Room-temperature Fe<sup>2+</sup> : ZnS single crystal laser pumped by an electric-discharge HF laser”, Kvantovaya Elektronika, 46:9 (2016), 769–771 [Quantum Electron., 46:9 (2016), 769–771 ] |
4
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2015 |
4. |
S. D. Velikanov, N. A. Zaretskiy, E. A. Zotov, V. I. Kozlovsky, Yu. V. Korostelin, O. N. Krokhin, A. A. Maneshkin, Yu. P. Podmar'kov, S. A. Savinova, Ya. K. Skasyrsky, M. P. Frolov, R. S. Chuvatkin, I. M. Yutkin, “Investigation of Fe:ZnSe laser in pulsed and repetitively pulsed regimes”, Kvantovaya Elektronika, 45:1 (2015), 1–7 [Quantum Electron., 45:1 (2015), 1–7 ] |
48
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2013 |
5. |
V. I. Kozlovsky, Yu. V. Korostelin, O. G. Okhotnikov, Yu. P. Podmar'kov, Ya. K. Skasyrsky, M. P. Frolov, V. A. Akimov, “Intracavity laser spectroscopy with a semiconductor disk laser-pumped cw Cr<sup>2+</sup> : ZnSe laser”, Kvantovaya Elektronika, 43:9 (2013), 885–889 [Quantum Electron., 43:9 (2013), 885–889 ] |
11
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2012 |
6. |
M. A. Gubin, A. N. Kireev, V. I. Kozlovsky, Yu. V. Korostelin, V. A. Lazarev, A. B. Pnev, Yu. P. Podmar'kov, D. A. Tyurikov, M. P. Frolov, A. S. Shelkovnikov, “Observation of saturated dispersion resonances of methane in a two-mode Cr<sup>2+</sup> : ZnSe/CH<sub>4</sub> laser”, Kvantovaya Elektronika, 42:7 (2012), 565–566 [Quantum Electron., 42:7 (2012), 565–566 ] |
20
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7. |
M. A. Gubin, A. N. Kireev, V. I. Kozlovsky, Yu. V. Korostelin, A. B. Pnev, Yu. P. Podmar'kov, D. A. Tyurikov, M. P. Frolov, D. A. Shelestov, A. S. Shelkovnikov, “Tunable two-mode Cr<sup>2+</sup> : ZnSe laser with a frequency-noise spectral density of 0.03 Hz Hz<sup>-1/2</sup>”, Kvantovaya Elektronika, 42:6 (2012), 509–513 [Quantum Electron., 42:6 (2012), 509–513 ] |
13
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2011 |
8. |
V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, V. V. Mislavskii, Yu. P. Podmar'kov, Ya. K. Skasyrsky, M. P. Frolov, “Pulsed Fe<sup>2+</sup>:ZnS laser continuously tunable in the wavelength range of 3.49 — 4.65 μm”, Kvantovaya Elektronika, 41:1 (2011), 1–3 [Quantum Electron., 41:1 (2011), 1–3 ] |
35
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2010 |
9. |
V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, Ya. K. Skasyrsky, M. P. Frolov, “Continuous-wave Cr<sup>2+</sup>:CdS laser”, Kvantovaya Elektronika, 40:1 (2010), 7–10 [Quantum Electron., 40:1 (2010), 7–10 ] |
14
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2008 |
10. |
A. A. Voronov, V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, Ya. K. Skasyrsky, M. P. Frolov, “A continuous-wave Fe<sup>2+</sup>:ZnSe laser”, Kvantovaya Elektronika, 38:12 (2008), 1113–1116 [Quantum Electron., 38:12 (2008), 1113–1116 ] |
61
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11. |
V. A. Akimov, V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, Ya. K. Skasyrsky, M. P. Frolov, “A Cr<sup>2+</sup>:CdS laser tunable between 2.2 and 3.3 μm”, Kvantovaya Elektronika, 38:9 (2008), 803–804 [Quantum Electron., 38:9 (2008), 803–804 ] |
4
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12. |
V. A. Akimov, V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, Ya. K. Skasyrsky, M. P. Frolov, “Efficient pulsed Cr<sup>2+</sup>:CdSe laser continuously tunable in the spectral range from 2.26 to 3.61 μm”, Kvantovaya Elektronika, 38:3 (2008), 205–208 [Quantum Electron., 38:3 (2008), 205–208 ] |
54
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2007 |
13. |
V. A. Akimov, A. A. Voronov, V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, M. P. Frolov, “Intracavity laser spectroscopy by using a Fe<sup>2+</sup>:ZnSe laser”, Kvantovaya Elektronika, 37:11 (2007), 1071–1075 [Quantum Electron., 37:11 (2007), 1071–1075 ] |
22
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14. |
V. A. Akimov, V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, Ya. K. Skasyrsky, M. P. Frolov, “Efficient cw lasing in a Cr<sup>2+</sup>:CdSe crystal”, Kvantovaya Elektronika, 37:11 (2007), 991–992 [Quantum Electron., 37:11 (2007), 991–992 ] |
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2006 |
15. |
V. A. Akimov, A. A. Voronov, V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, M. P. Frolov, “Efficient lasing in a Fe<sup>2+</sup>:ZnSe crystal at room temperature”, Kvantovaya Elektronika, 36:4 (2006), 299–301 [Quantum Electron., 36:4 (2006), 299–301 ] |
89
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16. |
A. A. Voronov, V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, V. G. Polushkin, M. P. Frolov, “Passive Fe<sup>2+</sup>:ZnSe single-crystal <i>Q</i> switch for 3-μm lasers”, Kvantovaya Elektronika, 36:1 (2006), 1–2 [Quantum Electron., 36:1 (2006), 1–2 ] |
40
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2005 |
17. |
A. A. Voronov, V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, M. P. Frolov, “Laser parameters of a Fe:ZnSe crystal in the 85–255-K temperature range”, Kvantovaya Elektronika, 35:9 (2005), 809–812 [Quantum Electron., 35:9 (2005), 809–812 ] |
34
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18. |
V. A. Akimov, V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, M. P. Frolov, “Spectral dynamics of intracavity absorption in a pulsed Cr<sup>2+</sup>:ZnSe laser”, Kvantovaya Elektronika, 35:5 (2005), 425–428 [Quantum Electron., 35:5 (2005), 425–428 ] |
21
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19. |
N. P. Vagin, A. A. Ionin, I. V. Kochetov, A. P. Napartovich, Yu. P. Podmar'kov, M. P. Frolov, N. N. Yuryshev, “Measurement of the O<sub>2</sub> (b<sup>1</sup>Σ<sub>g</sub><sup>+</sup> → a<sup>1</sup>Δ<sub>g</sub>) transition probability by the method of intracavity laser spectroscopy”, Kvantovaya Elektronika, 35:4 (2005), 378–384 [Quantum Electron., 35:4 (2005), 378–384 ] |
15
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2004 |
20. |
V. A. Akimov, A. A. Voronov, V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, M. P. Frolov, “Efficient IR Fe:ZnSe laser continuously tunable in the spectral range from 3.77 to 4.40 μm”, Kvantovaya Elektronika, 34:10 (2004), 912–914 [Quantum Electron., 34:10 (2004), 912–914 ] |
56
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21. |
N. P. Vagin, A. A. Ionin, Yu. M. Klimachev, A. A. Kotkov, I. V. Kochetov, A. P. Napartovich, Yu. P. Podmar'kov, L. V. Seleznev, D. V. Sinitsyn, M. P. Frolov, G. D. Hager, N. N. Yuryshev, “Pulsed electron-beam-sustained discharge in oxygen-containing gas mixtures: electrical characteristics, spectroscopy,and singlet oxygen yield”, Kvantovaya Elektronika, 34:9 (2004), 865–870 [Quantum Electron., 34:9 (2004), 865–870 ] |
10
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22. |
V. A. Akimov, V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, M. P. Frolov, “Intracavity laser spectroscopy using a Cr<sup>2+</sup> : ZnSe laser”, Kvantovaya Elektronika, 34:2 (2004), 185–188 [Quantum Electron., 34:2 (2004), 185–188 ] |
24
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2003 |
23. |
V. I. Kozlovsky, Yu. V. Korostelin, A. I. Landman, Yu. P. Podmar'kov, M. P. Frolov, “Efficient lasing of a Cr<sup>2+</sup> : ZnSe crystal grown from a vapour phase”, Kvantovaya Elektronika, 33:5 (2003), 408–410 [Quantum Electron., 33:5 (2003), 408–410 ] |
20
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2001 |
24. |
V. S. Pazyuk, Yu. P. Podmar'kov, N. A. Raspopov, M. P. Frolov, “Direct detection of singlet oxygen O<sub>2</sub>(<i>a</i><sup>1</sup> <i>Δ<sub>g</sub></i>) by absorption at the <i>a</i><sup>1</sup> <i>Δ<sub>g</sub></i> → <i>b</i><sup>1</sup> <i>Σ<sub>g</sub></i><sup>+</sup> transition using intracavity laser spectroscopy”, Kvantovaya Elektronika, 31:4 (2001), 363–366 [Quantum Electron., 31:4 (2001), 363–366 ] |
19
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2000 |
25. |
Yu. P. Podmar'kov, M. P. Frolov, “Condensation of the emission spectrum of a wide-band laser in the case of intracavity emission scattering by an aerosol”, Kvantovaya Elektronika, 30:8 (2000), 669–672 [Quantum Electron., 30:8 (2000), 669–672 ] |
1
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1999 |
26. |
E. A. Meshalkin, Yu. P. Podmar'kov, M. P. Frolov, “Transformation of the diffraction patterns of screens into the diffraction patterns of additional screens in the course of scattering by a gas perturbation or by a particle in a laser beam caustic”, Kvantovaya Elektronika, 29:3 (1999), 265–268 [Quantum Electron., 29:12 (1999), 1103–1106 ] |
27. |
Yu. P. Podmar'kov, N. A. Raspopov, A. N. Savchenko, M. P. Frolov, “Highly sensitive detection of gaseous impurities by intracavity laser spectroscopy based on a Co:MgF<sub>2</sub> laser”, Kvantovaya Elektronika, 28:2 (1999), 186–188 [Quantum Electron., 29:8 (1999), 742–744 ] |
6
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28. |
Yu. P. Podmar'kov, N. A. Raspopov, A. N. Savchenko, M. P. Frolov, “Dynamics of the intracavity absorption in the spectrum of a Co:MgF<sub>2</sub> laser emitting for up to 1 ms”, Kvantovaya Elektronika, 26:3 (1999), 223–225 [Quantum Electron., 29:3 (1999), 223–225 ] |
6
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1998 |
29. |
Yu. P. Podmar'kov, M. P. Frolov, “Intracavity laser spectroscopy with a Co:MgF<sub>2</sub> laser”, Kvantovaya Elektronika, 25:7 (1998), 670–672 [Quantum Electron., 28:7 (1998), 652–654 ] |
30. |
N. P. Vagin, P. G. Kryukov, Yu. P. Podmar'kov, M. P. Frolov, N. N. Yuryshev, “Efficient operation of a Co:MgF<sub>2</sub> crystal laser pumped by radiation from a pulsed oxygen – iodine laser”, Kvantovaya Elektronika, 25:4 (1998), 299–300 [Quantum Electron., 28:4 (1998), 288–289 ] |
1
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1997 |
31. |
R. Yu. Abdulsabirov, S. L. Korableva, P. G. Kryukov, A. K. Naumov, Yu. P. Podmar'kov, V. V. Semashko, M. P. Frolov, “Efficient laser pumping of a Co:MgF<sub>2</sub> crystal by radiation with the wavelength 1.3 μm”, Kvantovaya Elektronika, 24:7 (1997), 606–608 [Quantum Electron., 27:7 (1997), 589–591 ] |
2
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1996 |
32. |
Yu. P. Podmar'kov, M. P. Frolov, “Determination of the concentrations of oxygen and water vapour, and of the temperature of the active medium in a chemical oxygen—iodine laser by intracavity laser spectroscopy”, Kvantovaya Elektronika, 23:7 (1996), 611–614 [Quantum Electron., 26:7 (1996), 595–598 ] |
3
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1995 |
33. |
Yu. P. Podmar'kov, M. P. Frolov, N. N. Yuryshev, “Direct measurement, by intracavity laser spectroscopy, of the population difference for the <i>b</i>–<i>X</i> transition in the NF radical”, Kvantovaya Elektronika, 22:7 (1995), 692–694 [Quantum Electron., 25:7 (1995), 665–667 ] |
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1991 |
34. |
V. A. Zolotarev, E. A. Petrukhin, Yu. P. Podmar'kov, A. S. Podsosonnyĭ, M. P. Frolov, “Optical excitation of the the <i>B</i><sup>2</sup>Σ<sub>1/2</sub><sup>+</sup> → <i>X</i><sup>2</sup>Σ<sub>1/2</sub><sup>+</sup> transition in the HgBr radical by consecutive interaction of HgBr<sub>2</sub> vapor with the fourth (264 nm) and third harmonics (352 nm) of a neodymium glass laser”, Kvantovaya Elektronika, 18:12 (1991), 1439–1441 [Sov J Quantum Electron, 21:12 (1991), 1326–1328 ] |
35. |
V. A. Zolotarev, D. V. Ishkov, Yu. P. Podmar'kov, M. P. Frolov, N. N. Yuryshev, “Influence of atomic oxygen on the dissociation of molecular iodine and dissipation of the energy stored in the active medium of an oxygen–iodine laser”, Kvantovaya Elektronika, 18:8 (1991), 912–917 [Sov J Quantum Electron, 21:8 (1991), 826–830 ] |
3
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36. |
N. P. Vagin, V. A. Zolotarev, V. S. Pazyuk, Yu. P. Podmar'kov, M. P. Frolov, N. N. Yuryshev, “Influence of molecular chlorine on the output energy of a pulsed oxygen–iodine chemical laser”, Kvantovaya Elektronika, 18:7 (1991), 840–843 [Sov J Quantum Electron, 21:7 (1991), 760–763 ] |
1
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37. |
N. P. Vagin, V. A. Zolotarev, P. G. Kryukov, V. S. Pazyuk, Yu. P. Podmar'kov, M. P. Frolov, N. N. Yuryshev, “Influence of an iodine donor on the output energy of a pulsed oxygen-iodine laser”, Kvantovaya Elektronika, 18:1 (1991), 33–37 [Sov J Quantum Electron, 21:1 (1991), 28–32 ] |
7
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1989 |
38. |
V. A. Zolotarev, P. G. Kryukov, Yu. P. Podmar'kov, M. P. Frolov, N. N. Yuryshev, “Oxygen–iodine laser with a photodissociation source of excited O<sub><font size=-1>2</font></sub>(<i>a</i><sup><font size=-1>1</font></sup>Δ<sub><i><font size=-1>g</font></i></sub>) oxygen”, Kvantovaya Elektronika, 16:6 (1989), 1095–1097 [Sov J Quantum Electron, 19:6 (1989), 709–710 ] |
2
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1988 |
39. |
V. A. Zolotarev, P. G. Kryukov, Yu. P. Podmar'kov, M. P. Frolov, V. A. Shcheglov, “Quasi-continuous operation of an IF(<i>B–X</i>) laser involving levels populated as a result of <i>VT</i> relaxation”, Kvantovaya Elektronika, 15:11 (1988), 2337–2340 [Sov J Quantum Electron, 18:11 (1988), 1464–1465 ] |
40. |
V. A. Zolotarev, P. G. Kryukov, Yu. P. Podmar'kov, M. P. Frolov, V. A. Shcheglov, “Optically pumped pulsed IF(<i>B→X</i>) laser utilizing a CF<sub>3</sub>I–NF<sub>2</sub>–He mixture”, Kvantovaya Elektronika, 15:5 (1988), 995–1001 [Sov J Quantum Electron, 18:5 (1988), 643–646 ] |
3
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1986 |
41. |
A. S. Bashkin, N. M. Gamzatov, Yu. P. Podmar'kov, O. E. Porodinkov, A. N. Oraevsky, “Numerical and experimental investigations of the energy capabilities of a chemical OD(OH)–CO<sub>2</sub> laser”, Kvantovaya Elektronika, 13:10 (1986), 1999–2008 [Sov J Quantum Electron, 16:10 (1986), 1319–1325 ] |
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1982 |
42. |
A. S. Bashkin, N. P. Vagin, L. V. Kulakov, A. N. Oraevsky, Yu. P. Podmar'kov, O. E. Porodinkov, M. I. Prishchepa, N. N. Yuryshev, “High-efficiency photoinitiated chemical D<sub>2</sub>–F<sub>2</sub>–CO<sub>2</sub> laser”, Kvantovaya Elektronika, 9:3 (1982), 624–625 [Sov J Quantum Electron, 12:3 (1982), 383–384 ] |
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