Progress in mid-IR lasers based on Cr and Fe-doped II–VI chalcogenides SB Mirov, VV Fedorov, D Martyshkin, IS Moskalev, M Mirov, S Vasilyev IEEE Journal of selected topics in quantum electronics 21 (1), 292-310, 2014 | 457 | 2014 |
Frontiers of mid-IR lasers based on transition metal doped chalcogenides SB Mirov, IS Moskalev, S Vasilyev, V Smolski, VV Fedorov, D Martyshkin, ... IEEE Journal of Selected Topics in Quantum Electronics 24 (5), 1-29, 2018 | 327 | 2018 |
Super-octave longwave mid-infrared coherent transients produced by optical rectification of few-cycle 2.5-μm pulses S Vasilyev, IS Moskalev, VO Smolski, JM Peppers, M Mirov, AV Muraviev, ... Optica 6 (1), 111-114, 2019 | 134 | 2019 |
140 W Cr: ZnSe laser system I Moskalev, S Mirov, M Mirov, S Vasilyev, V Smolski, A Zakrevskiy, ... Optics express 24 (18), 21090-21104, 2016 | 133 | 2016 |
Frontiers of mid-infrared lasers based on transition metal doped II–VI semiconductors S Mirov, V Fedorov, I Moskalev, M Mirov, D Martyshkin Journal of Luminescence 133, 268-275, 2013 | 116 | 2013 |
Ultrafast middle-IR lasers and amplifiers based on polycrystalline Cr: ZnS and Cr: ZnSe S Vasilyev, I Moskalev, M Mirov, V Smolski, S Mirov, V Gapontsev Optical Materials Express 7 (7), 2636-2650, 2017 | 114 | 2017 |
Multi-Watt mid-IR femtosecond polycrystalline Cr2+:ZnS and Cr2+:ZnSe laser amplifiers with the spectrum spanning 2.0–2.6 µm S Vasilyev, I Moskalev, M Mirov, S Mirov, V Gapontsev Optics express 24 (2), 1616-1623, 2016 | 98 | 2016 |
Three optical cycle mid-IR Kerr-lens mode-locked polycrystalline Cr2+:ZnS laser S Vasilyev, I Moskalev, M Mirov, S Mirov, V Gapontsev Optics letters 40 (21), 5054-5057, 2015 | 81 | 2015 |
Optical parametric oscillation in a random polycrystalline medium Q Ru, N Lee, X Chen, K Zhong, G Tsoy, M Mirov, S Vasilyev, SB Mirov, ... Optica 4 (6), 617-618, 2017 | 62 | 2017 |
Ultrabroad continuous-wave tuning of ceramic Cr: ZnSe and Cr: ZnS lasers E Sorokin, IT Sorokina, MS Mirov, VV Fedorov, IS Moskalev, SB Mirov Advanced Solid-State Photonics, AMC2, 2010 | 62 | 2010 |
Middle-IR frequency comb based on Cr: ZnS laser S Vasilyev, V Smolski, J Peppers, I Moskalev, M Mirov, Y Barnakov, ... Optics express 27 (24), 35079-35087, 2019 | 51 | 2019 |
Octave-spanning Cr: ZnS femtosecond laser with intrinsic nonlinear interferometry S Vasilyev, I Moskalev, V Smolski, J Peppers, M Mirov, V Fedorov, ... Optica 6 (2), 126-127, 2019 | 47 | 2019 |
Kerr-lens mode-locked femtosecond polycrystalline Cr2+:ZnS and Cr2+:ZnSe lasers S Vasilyev, M Mirov, V Gapontsev Optics express 22 (5), 5118-5123, 2014 | 43 | 2014 |
High average power Fe: ZnSe and Cr: ZnSe mid-IR solid state lasers S Mirov, V Fedorov, D Martyshkin, I Moskalev, M Mirov, S Vasilyev Advanced Solid State Lasers, AW4A. 1, 2015 | 42 | 2015 |
Kerr-lens mode-locked Cr: ZnS oscillator reaches the spectral span of an optical octave S Vasilyev, I Moskalev, V Smolski, J Peppers, M Mirov, Y Barnakov, ... Optics Express 29 (2), 2458-2465, 2021 | 37 | 2021 |
Half-Watt average power femtosecond source spanning 3–8 µm based on subharmonic generation in GaAs V Smolski, S Vasilyev, I Moskalev, M Mirov, Q Ru, A Muraviev, ... Applied Physics B 124 (6), 101, 2018 | 37 | 2018 |
Progress in Cr and Fe doped ZnS/Se mid-IR CW and femtosecond lasers S Vasilyev, I Moskalev, M Mirov, V Smolski, D Martyshkin, V Fedorov, ... Ultrafast Bandgap Photonics II 10193, 131-139, 2017 | 33 | 2017 |
Mid-IR Kerr-lens mode-locked polycrystalline Cr: ZnS and Cr: ZnSe lasers with intracavity frequency conversion via random quasi-phase-matching S Vasilyev, I Moskalev, M Mirov, V Smolski, S Mirov, V Gapontsev Nonlinear Frequency Generation and Conversion: Materials, Devices, and …, 2016 | 29 | 2016 |
High average power (35 W) pulsed Fe: ZnSe laser tunable over 3.8-4.2 µm DV Martyshkin, VV Fedorov, M Mirov, I Moskalev, S Vasilyev, SB Mirov CLEO: Science and Innovations, SF1F. 2, 2015 | 29 | 2015 |
High power (9.2 W) CW 4.15 μm Fe: ZnSe laser DV Martyshkin, VV Fedorov, M Mirov, I Moskalev, S Vasilyev, V Smolski, ... 2017 Conference on Lasers and Electro-Optics (CLEO), 1-2, 2017 | 28 | 2017 |