High-efficiency lasing and spectroscopy of domestic 1\% Nd:YAG and 1\% Ho:YAG ceramics / Vatnik S. M.,Vedin I. A.,Kurbatov P. F.,Osipov V. V.,Luk'yashin K. E.,Maksimov R. N.,Solomonov V. I. // . - 2017. - V. 793, l. .

ISSN/EISSN:
1742-6588 / нет данных
Type:
Proceedings Paper
Abstract:
We report on spectroscopy and high-efficiency lasing of YAG ceramics synthesized at the Institute of Electrophysics, Ural Branch, Russian Academy of Sciences. The best slope efficiency is to be 36\% for 1\% Nd: YAG ceramics and 40\% for 1\% Ho: YAG ceramics, in the latter case the emission was centred at 2090 nm. Internal losses in the samples of domestic ceramics were estimated.
Author keywords:
OPTICAL PARAMETRIC OSCILLATOR; LASER CERAMICS; YAG LASER; FABRICATION; HO; ND
DOI:
10.1088/1742-6596/793/1/012030
Web of Science ID:
ISI:000404044300030
Соавторы в МНС:
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Поле Значение
Book-Group-Author IOP
Booktitle VII INTERNATIONAL SYMPOSIUM AND YOUNG SCIENTISTS SCHOOL MODERN PROBLEMS OF LASER PHYSICS
Series Journal of Physics Conference Series
Note 7th International Symposium and Young Scientists School on Modern Problems of Laser Physics (MPLP), Russian Acad Sci, Inst Laser Phys, Siberian Branch, Novosibirsk, RUSSIA, AUG 22-28, 2016
Organization Novosibirsk State Univ; Russian Acad Sci, Inst Spectroscopy; M V Lomonosov Moscow State Univ, Int Laser Ctr; Fed State Unitary Enterprise VNIIFTRI; Fed Agcy Sci Org; Russian Fdn Basic Res; Novosibirsk Reg Fund Support Sci \& Innovat Activities; Nauchnoe Oborudovanie Grp Co
Publisher IOP PUBLISHING LTD
Address DIRAC HOUSE, TEMPLE BACK, BRISTOL BS1 6BE, ENGLAND
Language English
Article-Number UNSP 012030
Keywords-Plus OPTICAL PARAMETRIC OSCILLATOR; LASER CERAMICS; YAG LASER; FABRICATION; HO; ND
Research-Areas Physics
Web-of-Science-Categories Physics, Applied
Author-Email vatnik@laser.nsc.ru
Funding-Acknowledgement Research Programs of Presidium of Russian Academy of Sciences ``Extreme Laser Light: Physics and Fundamental Applications{''} {[}4.4-2016]; R@D program ``Fundamentals of Breakthrough Double Technologies for National Security{''} {[}32]
Funding-Text This work was supported by the Research Programs of Presidium of Russian Academy of Sciences ``Extreme Laser Light: Physics and Fundamental Applications{''} (project no. 4.4-2016) and. R@D program ``Fundamentals of Breakthrough Double Technologies for National Security{''} (project no. 32).
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