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© The Author(s) 2015 The online version of this article is published within an Open Access environment subject to the conditions of the Creative Commons Attribution licence .

Abstract

An all-solid-state single-frequency 1064 nm laser with a [formula omitted: see PDF] pulse width, 500 Hz repetition rate and 700 mJ single pulse energy is designed using seed injection and a three-stage master oscillator power amplifier (MOPA) construction. Using this as a basis, research on long-pulse laser frequency doubling is carried out. By designing and optimizing the lithium triborate (LBO) crystal, the theoretically calculated maximum conversion efficiency [formula omitted: see PDF] reaches 68% at [formula omitted: see PDF] , while [formula omitted: see PDF] is 33% at [formula omitted: see PDF] . Generation of 212 mJ pulses of green light with a repetition rate as high as 500 Hz is obtained from a fundamental energy of 700 mJ. The experimental conversion efficiency reaches 31% and the power stability is better than [formula omitted: see PDF] .

Details

Title
Long-pulse, single-frequency 1064 nm laser and frequency doubling
Author
Xu, Xiafei; Xie, Gang; Lu, Yanhua; Zhang, Lei; Wan, Min
Publication year
2015
Publication date
2015
Publisher
Cambridge University Press
ISSN
20954719
e-ISSN
20523289
Source type
Scholarly Journal
Language of publication
English
ProQuest document ID
1761413785
Copyright
© The Author(s) 2015 The online version of this article is published within an Open Access environment subject to the conditions of the Creative Commons Attribution licence <http://creativecommons.org/licenses/by/3.0/>.