Broadband carbon monoxide laser system operating in the wavelength range of 2.5–8.3 μm YM Andreev, AA Ionin, IO Kinyaevsky, YM Klimachev, AY Kozlov, ... Quantum Electronics 43 (2), 139, 2013 | 66 | 2013 |
Cascaded carbon monoxide laser frequency conversion into the 4.3–4.9 μm range in a single ZnGeP2 crystal AA Ionin, IO Kinyaevskiy, YM Klimachev, AA Kotkov, AY Kozlov, ... Optics Letters 37 (14), 2838-2840, 2012 | 44 | 2012 |
Ultra-broadband hybrid infrared laser system OV Budilova, AA Ionin, IO Kinyaevskiy, YM Klimachev, AA Kotkov, ... Optics Communications 363, 26-30, 2016 | 39 | 2016 |
Direct femtosecond laser fabrication of antireflective layer on GaAs surface AA Ionin, YM Klimachev, AY Kozlov, SI Kudryashov, AE Ligachev, ... Applied Physics B 111 (3), 419-423, 2013 | 39 | 2013 |
Mode‐locked CO laser frequency doubling in ZnGeP2 with 25% efficiency AA Ionin, J Guo, LM Zhang, JJ Xie, YM Andreev, IO Kinyaevsky, ... Laser Physics Letters 8 (10), 723-728, 2011 | 38 | 2011 |
Carbon monoxide laser emitting nanosecond pulses with 10 MHz repetition rate AA Ionin, YM Klimachev, AA Kotkov, AY Kozlov, LV Seleznev, DV Sinitsyn Optics Communications 282 (2), 294-299, 2009 | 36 | 2009 |
Frequency tunable CO laser operating on the highest vibrational transition with wavelength of 8.7 μm AA Ionin, IO Kinyaevskiy, YM Klimachev, AA Kotkov, AY Kozlov Optics letters 42 (3), 498-501, 2017 | 32 | 2017 |
Frequency conversion of mode-locked and Q-switched CO laser radiation with efficiency up to 37% YM Andreev, OV Budilova, AA Ionin, IO Kinyaevskiy, YM Klimachev, ... Optics Letters 40 (13), 2997-3000, 2015 | 32 | 2015 |
Magnitorefraktivny effekt v magnitnih nanokompozitah AB Granovsky, IV Bykov, EA Gan’shina, VS Guschin, M Inoue, YE Kalinin, ... Zhurnal Eksperimental’noy i Teoreticheskoy Fiziki 123, 1256-1266, 2003 | 32* | 2003 |
Broadband two-stage frequency conversion of CO laser in AgGaSe2 crystal OV Budilova, AA Ionin, IO Kinyaevskiy, YM Klimachev, AA Kotkov, ... Optics Letters 41 (4), 777-780, 2016 | 31 | 2016 |
Multiline laser probing of CO: He, CO: N2, and CO: O2 active media in a wide-aperture pulsed amplifier SV Vetoshkin, AA Ionin, YM Klimachev, AY Kozlov, AA Kotkov, OA Rulev, ... Journal of Russian Laser Research 27 (1), 33-69, 2006 | 27 | 2006 |
RF discharge slab CO laser operating in both fundamental and first-overtone bands AA Ionin, AY Kozlov, LV Seleznev, DV Sinitsyn Optics Communications 282 (4), 629-634, 2009 | 25 | 2009 |
Spectroscopic detection of sulfur oxides in the aircraft wake OG Buzykin, SV Ivanov, AA Ionin, AA Kotkov, AY Kozlov Journal of Russian Laser Research 26 (5), 402-426, 2005 | 25 | 2005 |
Mode-locked and Q-switched carbon monoxide laser system OV Budilova, AA Ionin, IO Kinyaevskiy, YM Klimachev, AA Kotkov, ... Optics Communications 345, 163-167, 2015 | 24 | 2015 |
Sum frequency generation of multi-line slab radio frequency discharge carbon monoxide laser system with intracavity nonlinear BaGa2GeSe6 crystal AA Ionin, DV Badikov, VV Badikov, IO Kinyaevskiy, YM Klimachev, ... Optics letters 43 (18), 4358-4361, 2018 | 22 | 2018 |
Gain dynamics in a pulsed laser amplifier on CO—He, CO—N2 and CO—O2 gas mixtures SV Vetoshkin, AA Ionin, YM Klimachev, AY Kozlov, AA Kotkov, OA Rulev, ... Quantum Electronics 37 (2), 111-117, 2007 | 20 | 2007 |
Slab overtone CO laser operating in the 2.5–4.0 micron spectral range AA Ionin, AY Kozlov, LV Seleznev, DV Sinitsyn IEEE journal of quantum electronics 45 (3), 215-217, 2009 | 18 | 2009 |
Repetitively pulsed cryogenically cooled quasi-sealed-off slab RF discharge first-overtone CO laser AA Ionin, AY Kozlov, OA Rulev, LV Seleznev, DV Sinitsyn Applied Physics B 122 (7), 1-10, 2016 | 16 | 2016 |
Master Oscillator-Power Amplifier carbon monoxide laser system emitting nanosecond pulses AA Ionin, IO Kinyaevskiy, YM Klimachev, AA Kotkov, AY Kozlov Optics Communications 285 (10-11), 2707-2714, 2012 | 16 | 2012 |
Influence of nitrogen oxides NO and NO2 on singlet delta oxygen production in pulsed discharge AA Ionin, YM Klimachev, AY Kozlov, AA Kotkov, IV Kochetov, ... Journal of Physics D: Applied Physics 42 (1), 015201, 2008 | 16 | 2008 |