DocumentCode :
2922749
Title :
Improved saturation fluence for peta-watt CPA system in low temperature Yb-doped materials
Author :
Kawanaka, J. ; Nishioka, H. ; Ueda, K.
Author_Institution :
Kansai Establ., JAERI, Kyoto, Japan
fYear :
2000
fDate :
7-12 May 2000
Firstpage :
250
Lastpage :
251
Abstract :
Summary form only given. Yb-doped materials is one of the most promising materials in the next generation of a compact table-top peta-watt laser using a chirped pulse amplification system (CPA). Yb:YLF and Yb:glass are suitable for ultra-short pulse generation due to a wide emission spectral width more than 50 nm. We demonstrated a LD-pumped oscillator performance with a Yb:YLF for the first time. In the hard pumping with more than 50 kW/cm/sup 2/, laser gain was not around emission peak wavelength due to large reabsorption of a lower lasing level. Effective saturation fluence at laser wavelength, therefore, was much higher than a bulk damage threshold for a chirped pulse. The reduction of saturation fluence is an inevitable difficulty in realizing a compact LD-pumped table-top CPA system.
Keywords :
chirp modulation; optical materials; optical pulse generation; optical pumping; optical saturation; ytterbium; LiYF4:Yb; YLF:Yb; Yb-doped materials; Yb:LiYF/sub 4/; Yb:glass; bulk damage threshold; chirped pulse; chirped pulse amplification system; compact laser diode-pumped table-top CPA system; compact table-top peta-watt laser; effective saturation fluence; emission peak wavelength; emission spectral width; laser diode-pumped oscillator performance; laser gain; laser wavelength; lasing level; low temperature Yb-doped materials; reabsorption; saturation fluence; ultra-short pulse generation; Absorption; Chirp; Coatings; Dielectrics; Gaussian processes; Laser theory; Pulse generation; Space vector pulse width modulation; Temperature distribution;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Lasers and Electro-Optics, 2000. (CLEO 2000). Conference on
Conference_Location :
San Francisco, CA, USA
Print_ISBN :
1-55752-634-6
Type :
conf
DOI :
10.1109/CLEO.2000.906975
Filename :
906975
Link To Document :
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