Crystal Growth of LiNa5Mo9O30 Crystals of High Optical Quality

Author:

Khokhlov Nikolai1,Grishchenko Ivan2ORCID,Shevelkina Ekaterina3,Bindyug Denis4ORCID,Barkanova Ekaterina1,Denisov Dmitry2ORCID,Demushkin Dmitry2,Telegin Ivan3,Yezhikova Ekaterina3,Avetissov Igor1ORCID,Avetisov Roman1,Konyashkin Alexey5,Ryabushkin Oleg5

Affiliation:

1. Department of Chemistry and Technology of Crystals, D. Mendeleev University of Chemical Technology of Russia (MUCTR), Moscow 125047, Russia

2. Department of Photonics, Moscow Institute of Physics and Technology, Dolgoprudnyy, Moscow 141700, Russia

3. NTO «IRE-Polus», Fryazino, Moscow 141190, Russia

4. Department of Functional Nanosystems and High-Temperature Materials, National University of Science and Technology MISiS, Moscow 119049, Russia

5. Kotelnikov Institute of Radio-Engineering and Electronics of RAS, Fryazino, Moscow 141190, Russia

Abstract

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.

Funder

Ministry of Science and Higher Education of Russia

Publisher

MDPI AG

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