Presentation 2001/5/11
Improved laser operation of diode-pumped Yb-doped materials at low temperature
A. Yasuhara, J. Kawanaka, H. Nishioka, K. Yamakawa, K. Ueda,
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Abstract(in Japanese) (See Japanese page)
Abstract(in English) A cw laser operation of diode-pumped Yb:YLF and Yb:Glass has been improved at low temperature. A small signal gain increased dramatically to 30 cm^<-1> and 1.1cm^<-1> at 77 K for Yb:YLF and Yb:Glass, respectively, from 3 cm^<-1> and 0.2cm^<-1> at room temperature. Moreover, thermal conductivity of Yb:YLF at 77 K have been up to 23 W/mK, which is about four times higher than that at room temperature.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) LD pumping / ultrahigh-peak-power laser / Yb doped solid-state laser / low temperature / small signal gain / thermal conductivity
Paper # LQE2001-8
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Committee LQE
Conference Date 2001/5/11(1days)
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Registration To Lasers and Quantum Electronics (LQE)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Improved laser operation of diode-pumped Yb-doped materials at low temperature
Sub Title (in English)
Keyword(1) LD pumping
Keyword(2) ultrahigh-peak-power laser
Keyword(3) Yb doped solid-state laser
Keyword(4) low temperature
Keyword(5) small signal gain
Keyword(6) thermal conductivity
1st Author's Name A. Yasuhara
1st Author's Affiliation Department of Electronics, Faculty of Engineering, Doshisha University:Advanced Photon Research Center, Japan Atomic Energy Research Institute()
2nd Author's Name J. Kawanaka
2nd Author's Affiliation Advanced Photon Research Center, Japan Atomic Energy Research Institute
3rd Author's Name H. Nishioka
3rd Author's Affiliation Institute for Laser Science, University of Electro-Communications
4th Author's Name K. Yamakawa
4th Author's Affiliation Advanced Photon Research Center, Japan Atomic Energy Research Institute
5th Author's Name K. Ueda
5th Author's Affiliation Institute for Laser Science, University of Electro-Communications
Date 2001/5/11
Paper # LQE2001-8
Volume (vol) vol.101
Number (no) 65
Page pp.pp.-
#Pages 6
Date of Issue