Influence of Cr3+ concentration on the spectroscopy and laser performance of Cr,Er:YSGG crystal
Author:
Affiliation:
1. Chinese Academy of Sciences, Anhui Institute of Optics and Fine Mechanics, The Key Laboratory of Pho
Publisher
SPIE-Intl Soc Optical Eng
Subject
General Engineering,Atomic and Molecular Physics, and Optics
Reference16 articles.
1. 2.70 μm CrEr: YSGG laser with high output energy and FTIR-Q-switch
2. Er3+ doped GYSGG crystal as a new laser material resistant to ionizing radiation
3. ZnGeP_2 optical parametric oscillator with 38–124-µm tunability
4. Effects of energy transfer among Er^3+ ions on the fluorescence decay and lasing properties of heavily doped Er:Y_3Al_5O_12
5. On the dynamics of population inversion for 3 mu m Er/sup 3+/ lasers
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1. High-power xenon lamp-pumped Er:YAP pulse laser operated in the free running and acousto-optical Q-switching modes;Chinese Physics B;2023-07-20
2. 2.79 μm Cr,Er:YSGG laser with a high energy realized by thermal bonding and concave end-face;Optics & Laser Technology;2023-07
3. 基于光栅腔的Er∶YSGG固体激光器单模输出特性;Laser & Optoelectronics Progress;2023
4. 100 Hz repetition-rate 2.794 μm Cr,Er:YSGG passively Q-switched laser with Fe2+:ZnSe saturable absorber;Infrared Physics & Technology;2022-05
5. 2.79 μm laser performance of a 968 nm LD side-pumped Er:LuYSGG mixed crystal;CrystEngComm;2022
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