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Development of alexandrite laser crystal treatment prior to coating deposition for high power space applications

Authors :
Istvan Balasa
Justinas Butkus
Mahmoud Hmidat
Laurynas Lukoševičius
Dietmar Kracht
Stefanie Unland
Mirco Lorrai
Lars Jensen
Peter Wessels
Roland Kalms
Silke Kramprich
Pier Giorgio Lorrai
Jörg Neumann
Heinrich Mädebach
Source :
SPIE Proceedings Vol. 11872, Advances in Optical Thin Films VII, Advances in Optical Thin Films VII
Publication Year :
2021
Publisher :
SPIE, 2021.

Abstract

Modern laser systems have paved the way for spaceborne laser applications such as Earth's surface and atmosphere monitoring. Well known technologies like Nd:YAG lasers are often employed; however, they do not always comply with all the different requirements for space missions. High optical efficiencies and tunable wavelength, which are desirable for many applications, can be reconciled with a simple laser design employing Alexandrite crystals. Horizon 2020 project presented here discuss the results on the development of alexandrite laser crystal treatment prior to coating deposition, as well as future plans on crystal interference coating deposition for LIDT improvement.

Details

ISBN :
978-1-5106-4588-2
978-1-5106-4589-9
ISBNs :
9781510645882 and 9781510645899
Database :
OpenAIRE
Journal :
Laser-Induced Damage in Optical Materials 2021
Accession number :
edsair.doi.dedup.....614ce27447a869b2222f7cc2b01b6690