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Crystal Growth of LiNa5Mo9O30 Crystals of High Optical Quality
by
Shevelkina, Ekaterina
, Ryabushkin, Oleg
, Denisov, Dmitry
, Grishchenko, Ivan
, Telegin, Ivan
, Avetissov, Igor
, Barkanova, Ekaterina
, Yezhikova, Ekaterina
, Demushkin, Dmitry
, Bindyug, Denis
, Konyashkin, Alexey
, Avetisov, Roman
, Khokhlov, Nikolai
in
Crystal growth
/ Crystallography
/ Crystals
/ Czochralski method
/ Homogenization
/ Inclusions
/ Laser damage
/ Lasers
/ lithium–sodium–molybdate
/ Low temperature
/ nonlinear optic crystal
/ Optics
/ Radiation
/ Second harmonic generation
/ Yield point
2024
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Crystal Growth of LiNa5Mo9O30 Crystals of High Optical Quality
by
Shevelkina, Ekaterina
, Ryabushkin, Oleg
, Denisov, Dmitry
, Grishchenko, Ivan
, Telegin, Ivan
, Avetissov, Igor
, Barkanova, Ekaterina
, Yezhikova, Ekaterina
, Demushkin, Dmitry
, Bindyug, Denis
, Konyashkin, Alexey
, Avetisov, Roman
, Khokhlov, Nikolai
in
Crystal growth
/ Crystallography
/ Crystals
/ Czochralski method
/ Homogenization
/ Inclusions
/ Laser damage
/ Lasers
/ lithium–sodium–molybdate
/ Low temperature
/ nonlinear optic crystal
/ Optics
/ Radiation
/ Second harmonic generation
/ Yield point
2024
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Crystal Growth of LiNa5Mo9O30 Crystals of High Optical Quality
by
Shevelkina, Ekaterina
, Ryabushkin, Oleg
, Denisov, Dmitry
, Grishchenko, Ivan
, Telegin, Ivan
, Avetissov, Igor
, Barkanova, Ekaterina
, Yezhikova, Ekaterina
, Demushkin, Dmitry
, Bindyug, Denis
, Konyashkin, Alexey
, Avetisov, Roman
, Khokhlov, Nikolai
in
Crystal growth
/ Crystallography
/ Crystals
/ Czochralski method
/ Homogenization
/ Inclusions
/ Laser damage
/ Lasers
/ lithium–sodium–molybdate
/ Low temperature
/ nonlinear optic crystal
/ Optics
/ Radiation
/ Second harmonic generation
/ Yield point
2024
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Crystal Growth of LiNa5Mo9O30 Crystals of High Optical Quality
Journal Article
Crystal Growth of LiNa5Mo9O30 Crystals of High Optical Quality
2024
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Overview
The bulk of the LiNa5Mo9O30 (LNM) crystals were successfully grown in the [010] and [001] directions without internal inclusions and cracks, using the Czochralski method with a low temperature gradient. The crystal grown in the [010] direction showed a tendency to twinning. The crystal grown in the [001] direction demonstrated high structural perfection (FWHM = 13″) for the (001) plane and high optical quality Δn ≈ 2 × 10−5. The laser-induced damage threshold was measured along a, b and c axes and was 12.2, 27.0 and 27.5 J/cm2, respectively. The thermo-optical coefficient dn/dT was measured for the main crystallographic axes, which was −5.75 × 10−6, −20.2 × 10−6 and 3.65 × 10−6 K−1 along the a, b and c axes, respectively. The second harmonic generation (SHG) was conducted in the crystalline LNM sample. The maximum efficiency value of 3.5% at a pump power of 12 W was achieved.
Publisher
MDPI AG
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