Determination of the optimum absorption coefficient in Cr^4+:forsterite lasers under thermal loading
Author:
Publisher
The Optical Society
Subject
Atomic and Molecular Physics, and Optics
Reference6 articles.
1. Laser action in chromium‐doped forsterite
2. Generation of tunable femtosecond pulses in the 1.21-1.27 μm and 605-635 nm wavelength region by using a regeneratively initiated self-mode-locked Cr:forsterite laser
3. All-solid-state femtosecond sources in the near infrared
4. Direct diode-pumped continuous-wave near-infrared tunable laser operation of Cr^4+:forsterite and Cr^4+:Ca_2GeO_4
5. Performance of a continuous-wave forsterite laser with krypton ion, Ti:sapphire, and Nd:YAG pump lasers
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1. Temperature dependence and quantum efficiency of ultrabroad NIR photoluminescence from Ni^2+centers in nanocrystalline Ba-Al titanate glass ceramics;Optics Letters;2012-03-23
2. Saturable absorbers based on tetrahedrally coordinated transition-metal ions in crystals (Review);Journal of Applied Spectroscopy;2009-01
3. Accurate determination of saturation parameters for Cr^4+-doped solid-state saturable absorbers;Journal of the Optical Society of America B;2006-02-01
4. High-energy self-starting femtosecond Cr:forsterite oscillator operating at low-repetition rate;Solid State Lasers XI;2002-03-13
5. High-energy self-starting femtosecond Cr^4+:Mg_2SiO_4 oscillator operating at a low repetition rate;Optics Letters;2001-12-15
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