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Sergey Mirov

Showing results (1-10 of 25) with videos related to

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Journal of Biomedical Optics|November 8, 2002
Using two discrete frequencies within the middle infrared to quantitatively determine glucose in serumWilliam Blake Martin, Sergey Mirov, Ramakrishna Venugopalan
Applied Spectroscopy|August 2, 2005
Middle infrared, quantum cascade laser optoelectronic absorption system for monitoring glucose in serumW Blake Martin, Sergey Mirov, Ramakrishna Venugopalan
Optics Express|March 17, 2021
Room temperature, nanosecond, 60 mJ/pulse Fe:ZnSe master oscillator power amplifier system operating at 3.8-5.0 µmDmitry Martyshkin, Krishna Karki, Vladimir Fedorov, et al.
Optics Express|June 6, 2019
Q-switched and gain-switched Fe:ZnSe lasers tunable over 3.60-5.15 µmVladimir Fedorov, Dmitry Martyshkin, Krishna Karki, et al.
Optics Express|March 27, 2021
High energy (0.8 J) mechanically Q-switched 2.94 μm Er:YAG laserKrishna Karki, Vladimir Fedorov, Dmitry Martyshkin, et al.
Optics Express|May 9, 2023
Spectral narrowing and broadening of Cr:ZnS/Se laser oscillation due to mode competition and spatial hole burning in the gain elementRem Danilin, Vladimir Fedorov, Dmitry Martyshkin, et al.
Applied Spectroscopy|November 16, 2025
Application of Laser-Induced Breakdown Spectroscopy for Measuring Chromium Concentration in Chromium-Doped Zinc Selenide (Cr:ZnSe) Laser MaterialsDeblina Das, Vladimir Fedorov, Dmitry Martyshkin, et al.
Optics Letters|October 30, 2015
Three optical cycle mid-IR Kerr-lens mode-locked polycrystalline Cr(2+):ZnS laserSergey Vasilyev, Igor Moskalev, Mike Mirov, et al.
Optics Express|October 29, 2020
Octave-spanning mid-infrared femtosecond OPA in a ZnGeP<sub>2</sub> pumped by a 2.4 μm Cr:ZnSe chirped-pulse amplifierSang-Hoon Nam, Vladimir Fedorov, Sergey Mirov, et al.
Optics Express|February 3, 2016
Multi-Watt mid-IR femtosecond polycrystalline Cr(2+):ZnS and Cr(2+):ZnSe laser amplifiers with the spectrum spanning 2.0-2.6 µmSergey Vasilyev, Igor Moskalev, Mike Mirov, et al.
Pageof 3

Showing results (1-10 of 25) with videos related to

Sort By:
Pageof 3
Journal of Biomedical Optics|November 8, 2002
Using two discrete frequencies within the middle infrared to quantitatively determine glucose in serumWilliam Blake Martin, Sergey Mirov, Ramakrishna Venugopalan
Applied Spectroscopy|August 2, 2005
Middle infrared, quantum cascade laser optoelectronic absorption system for monitoring glucose in serumW Blake Martin, Sergey Mirov, Ramakrishna Venugopalan
Optics Express|March 17, 2021
Room temperature, nanosecond, 60 mJ/pulse Fe:ZnSe master oscillator power amplifier system operating at 3.8-5.0 µmDmitry Martyshkin, Krishna Karki, Vladimir Fedorov, et al.
Optics Express|June 6, 2019
Q-switched and gain-switched Fe:ZnSe lasers tunable over 3.60-5.15 µmVladimir Fedorov, Dmitry Martyshkin, Krishna Karki, et al.
Optics Express|March 27, 2021
High energy (0.8 J) mechanically Q-switched 2.94 μm Er:YAG laserKrishna Karki, Vladimir Fedorov, Dmitry Martyshkin, et al.
Optics Express|May 9, 2023
Spectral narrowing and broadening of Cr:ZnS/Se laser oscillation due to mode competition and spatial hole burning in the gain elementRem Danilin, Vladimir Fedorov, Dmitry Martyshkin, et al.
Applied Spectroscopy|November 16, 2025
Application of Laser-Induced Breakdown Spectroscopy for Measuring Chromium Concentration in Chromium-Doped Zinc Selenide (Cr:ZnSe) Laser MaterialsDeblina Das, Vladimir Fedorov, Dmitry Martyshkin, et al.
Optics Letters|October 30, 2015
Three optical cycle mid-IR Kerr-lens mode-locked polycrystalline Cr(2+):ZnS laserSergey Vasilyev, Igor Moskalev, Mike Mirov, et al.
Optics Express|October 29, 2020
Octave-spanning mid-infrared femtosecond OPA in a ZnGeP<sub>2</sub> pumped by a 2.4 μm Cr:ZnSe chirped-pulse amplifierSang-Hoon Nam, Vladimir Fedorov, Sergey Mirov, et al.
Optics Express|February 3, 2016
Multi-Watt mid-IR femtosecond polycrystalline Cr(2+):ZnS and Cr(2+):ZnSe laser amplifiers with the spectrum spanning 2.0-2.6 µmSergey Vasilyev, Igor Moskalev, Mike Mirov, et al.
Pageof 3