Yu L Kalachev
Russian Academy of Sciences
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Featured researches published by Yu L Kalachev.
Laser Physics | 2009
Yu L Kalachev; V. A. Mikhaylov; Ivan A. Shcherbakov
CW acousto-optical mode-locked diode pumped Tm:YAlO3 laser at 1.936 μm was experimentally studied. Lasing with output power ∼100 mW, pulse repetition rate 103.4 MHz and laser pulse durations in the range of 30–200 ps was realized. The problem of laser intensity stabilization is discussed.
Quantum Electronics | 2016
Yu. D. Zavartsev; A. I. Zagumennyi; Yu L Kalachev; S. A. Kutovoi; V A Mikhailov; Ivan A. Shcherbakov
A growth technology has been developed, and a Tm:Ho:Yb3Al5O12 laser crystal of high optical quality has been grown by Czochralski method. Its spectral and luminescent characteristics are studied. Lasing at a wavelength of 2100 nm is obtained under pumping into the absorption line on the 3H6 – 3F4 transition of the Tm3+ ion at a wavelength of 1678 nm. The slope and total (optical) efficiencies of the laser at an output power of up to 320 mW reach 41% and 30%, respectively.
Glass Physics and Chemistry | 2011
B I Galagan; I. N. Glushchenko; B I Denker; Yu L Kalachev; V A Mikhailov; S E Sverchkov
The influence of the duration of melting, the purity of the reagents used for synthesis, and the material of crucibles on the optical losses in laser neodymium high-strength aluminoborophosphate glass has been investigated. The obtained results have demonstrated that the main reason of emerging of optical losses at the lasing wavelength in the glass under study is the interaction of the crucible material with the aluminoborophosphate melt which is aggressive at a synthesis temperature of 1350°C.
Physics of Wave Phenomena | 2017
Yu. D. Zavartsev; A. I. Zagumennyi; Yu L Kalachev; S. A. Kutovoi; V A Mikhailov; Ivan A. Shcherbakov
Six absorption bands of Tm3+:Sc2SiO5 crystal have been investigated by decomposing each absorption band into a series of Lorentzian peaks. Polarized light of two polarizations was transmitted in three perpendicular directions through a crystal shaped as a parallelepiped with polished faces. The results are presented in the form of tables containing the parameters of the found Lorentzian peaks: central wavelength, width, and height.
Physics of Wave Phenomena | 2016
Yu. D. Zavartsev; A. I. Zagumennyi; Yu L Kalachev; S. A. Kutovoi; V A Mikhailov; Ivan A. Shcherbakov
Acousto-optic Q-switched lasing has been obtained for the first time in a Tm:Ho:YbAGcrystal. The laser output power is analyzed as a function of the laser pulse repetition rate. It is found that at rates above 30 kHz the laser slope efficiency reaches maximum values (~20 to 30%), comparable with the efficiency in the cw mode. The shortest laser pulse width is about 40 ns, and the average output power reaches about 80mW.
international conference laser optics | 2014
Yu. D. Zavartsev; A. I. Zagumennyi; Yu L Kalachev; S. A. Kutovoi; V A Mikhailov; I. A. Scherbakov
The laser crystal Tm3+:Yb3Al5O12 (Tm:YbAG) was grown by the Czochralski method and was investigated under pumping by a Raman-shifted erbium fiber laser at a wavelength of 1.678 um. Absorbance and luminescence spectra were recorded and the luminescence lifetime of the upper lasing level 3F4 was measured to be 4,7 ms. Lasing of this crystal at a wavelength of 2.02 um was obtained for the first time. The laser slope efficiency reached 41% at the output power up to 330 mW at room temperature.
Quantum Electronics | 2014
Yu. D. Zavartsev; A. I. Zagumennyi; Yu L Kalachev; S. A. Kutovoi; V A Mikhailov; Ivan A. Shcherbakov
The Yb3Al5O12 (YbAG) crystal is proposed as a matrix of Tm3+-doped laser elements for two-micron lasers. A Tm : YbAG crystal of high optical quality is grown by the Czochralski method and its spectral and luminescent characteristics are studied. The luminescence decay time for the upper laser level 3F4 is measured to be 4.7 ms. Lasing in this crystal pumped by a 1.678-μm fibre laser is obtained at a wavelength of 2.02 μm for the first time. The total and slope efficiencies of the laser at room temperature and an output power up to 330 mW reach 33% and 41%, respectively.
Quantum Electronics | 2013
Yu. D. Zavartsev; A. I. Zagumennyi; Yu L Kalachev; S. A. Kutovoi; V A Mikhailov; Ivan A. Shcherbakov
The Tm3+ : Sc2SiO5 crystals of optical quality are grown by the Czochralski method. Lasing at a wavelength of ~1.98 μm is obtained in an active element made of a grown crystal under pumping by an erbium Raman fiber laser at a wavelength of 1.678 μm. The slope efficiency of the laser reaches 42% at an output power up to 320 mW.The Tm{sup 3+} : Sc{sub 2}SiO{sub 5} crystals of optical quality are grown by the Czochralski method. Lasing at a wavelength of ∼1.98 μm is obtained in an active element made of a grown crystal under pumping by an erbium Raman fiber laser at a wavelength of 1.678 μm. The slope efficiency of the laser reaches 42% at an output power up to 320 mW. (lasers)
Quantum Electronics | 2011
Yu. D. Zavartsev; A. I. Zagumennyi; Yu L Kalachev; S. A. Kutovoi; Viktor A. Mikhailov; Podreshetnikov; Ivan A. Shcherbakov
Lasing at a wavelength of 1.98 μm is obtained for the first time in a diode-pumped (λ = 792 μm) active element made of a Tm3+: Sc2SiO5 crystal grown by the Czochralski method. The laser slope efficiency reached 18.7% at the output power up to 520 mW.Lasing at a wavelength of 1.98 {mu}m is obtained for the first time in a diode-pumped ({lambda} = 792 {mu}m) active element made of a Tm{sup 3+}: Sc{sub 2}SiO{sub 5} crystal grown by the Czochralski method. The laser slope efficiency reached 18.7% at the output power up to 520 mW. (lasers)
Quantum Electronics | 2007
Yu. D. Zavartsev; A. I. Zagumennyi; Yu L Kalachev; S. A. Kutovoi; V A Mikhailov; Podreshetnikov; A A Sirotkin; Ivan A. Shcherbakov; R. Renner-Erny; W Luethy; Thomas Feurer
Lasing parameters of a mixed Nd{sup 3+}:Gd{sub 0.7}Y{sub 0.3}VO{sub 4} vanadate crystal emitting at the 913-nm {sup 4}F{sub 3/2}-{sup 4}I{sub 9/2} laser transition are studied. The output power of up to 600 mW was obtained upon longitudinal diode pumping for the absolute and slope laser efficiencies of {approx}13% and {approx}17%, respectively. (lasers)