On thermal effects in solid state lasers: the case of ytterbium-doped materials
TL;DR: A review of theoretical and experimental studies of thermal effects in solid-state lasers is presented, with a special focus on diode-pumped ytterbium-doped materials as mentioned in this paper.
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About: This article is published in Progress in Quantum Electronics. The article was published on 01 Jan 2006. and is currently open access.
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Citations
Comparative study of Nd:KGW lasers pumped at 808 nm and 877 nm
Huang Ke,Ge Wenqi,Tian-Zhuo Zhao,Jian-Guo He,Chen-Yong Feng,Zhong-Wei Fan +5 more
- 15 Oct 2015
TL;DR: In this paper, the laser performance and thermal analysis of Nd:KGW laser continuously pumped by 808 nm and 877 nm diode diode laser was comparatively investigated and an average output power of 1495 mW was obtained at pump power of 5.22 W while the laser was operating at repetition of 53.17 kHz.
3
All-fiber laser seeded femtosecond Yb:KGW solid state regenerative amplifier*
Renchong Lv,Renchong Lv,Hao Teng,Jiajun Song,Renzhu Kang,Renzhu Kang,Jiangfeng Zhu,Zhiyi Wei +7 more
TL;DR: In this article, a high efficiency compact Yb: KGW regenerative amplifier using an all-fiber laser seed source was comprehensively studied, and the experimental results show that the scheme can be scalable to higher energy of multi-mJ, sub-300 fs pulses.
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Comparative studies of high power diode-pumped Yb:CALGO and Yb:KYW lasers
Sujith Manjooran,Arkady Major +1 more
- 07 Mar 2019
TL;DR: In this paper, a direct comparison of continuous-wave diode-pumped Yb:CALGO and yb:KYW laser was performed in terms of output power and thermal lensing.
2
Diode-pumped Dy:KPb2Cl5 laser in the middle-infrared spectral region.
TL;DR: In this paper , a Dy:KPb2Cl5 (KPC) laser oscillating at approximately 4.2-4.5 µm was demonstrated for the first time, achieving a maximum output pulse energy of 1.1 mJ at 10 mJ of absorbed pump energy.
2
Power scaling estimate of crystalline fiber waveguides with rare earth doped YAG cores
TL;DR: In this paper, power scaling analysis based on the model by Dawson et al. for circular core fibers has been applied to estimating power scaling of crystalline fiber waveguides (CFWs) with RE 3+ doped single crystalline or ceramic YAG (RE=rare earth: Yb, Er, Tm and Ho).
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