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Splicing technology of Ti:sapphire crystals for a high-energy chirped pulse amplifier laser system 被引量:1

Splicing technology of Ti:sapphire crystals for a high-energy chirped pulse amplifier laser system
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摘要 We develop a splicing technology of Ti:sapphire crystals for a high-energy chirped pulse amplifier laser system that can suppress the parasitic lasing to improve the amplification efficiency compared to a large-size single Ti:sapphire crystal amplifier. Theoretical investigations on the characteristics of the amplifier with four splicing Ti:sapphire crystals,such as parasitic-lasing suppression and amplification efficiencies, are carried out. Some possible issues resulting from this splicing technology, including spectral modulation, stretching or splitting of the temporal profile, and the sidelobe generation in the spatial domain(near field and far field), are also investigated. Moreover, the feasibility of the splicing technology is preliminarily demonstrated in an experiment with a small splicing Ti:sapphire crystals amplifier. The temporal profile and spatial distribution of the output pulse from the splicing Ti:sapphire crystal amplifier are discussed in relation to the output pulse from a single Ti:sapphire crystal amplifier. We develop a splicing technology of Ti:sapphire crystals for a high-energy chirped pulse amplifier laser system that can suppress the parasitic lasing to improve the amplification efficiency compared to a large-size single Ti:sapphire crystal amplifier. Theoretical investigations on the characteristics of the amplifier with four splicing Ti:sapphire crystals,such as parasitic-lasing suppression and amplification efficiencies, are carried out. Some possible issues resulting from this splicing technology, including spectral modulation, stretching or splitting of the temporal profile, and the sidelobe generation in the spatial domain(near field and far field), are also investigated. Moreover, the feasibility of the splicing technology is preliminarily demonstrated in an experiment with a small splicing Ti:sapphire crystals amplifier. The temporal profile and spatial distribution of the output pulse from the splicing Ti:sapphire crystal amplifier are discussed in relation to the output pulse from a single Ti:sapphire crystal amplifier.
出处 《High Power Laser Science and Engineering》 SCIE CAS 2014年第2期1-8,共8页 高功率激光科学与工程(英文版)
基金 partially supported by the National Basic Research Program of China (Grant No. 2011CB808101) the National Natural Science Foundation of China (NSFC) (Grant Nos. 61221064, 61078037, 11127901, 11134010) the International S&T Cooperation Program of China (Grant No. 2011DFA11300)
关键词 CHIRPED pulse amplification SPLICING TECHNOLOGY Ti:sapphire crystal AMPLIFIER chirped pulse amplification splicing technology Ti:sapphire crystal amplifier
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  • 1J.Zhou,,C Huang,,M.M.Murnane,and H.C.Kapteyn. Opt.Lett . 1995
  • 2C.P.J.Barry,T.Guo,C.Le Blanc,,F.Raksi,C.Rose Petruck,J.Squier,K.R.Wilson,V.V.Yakovlev,and K. Yamakawa. Optics Letters . 1996
  • 3K.Yamakawa,M.Aoyama,S.Matsuoka,T.Kase,Y. Akahane,and H.Takuma. Optics Letters . 1998
  • 4S.Backus,C.G.DurfeeⅢ,G.Mourou,H.C.Kapteyn,and M.M.Murnane. Optics Letters . 1997
  • 5C.P.J.Barty,G.Korn,F.Raksi,,C.Rose-Petruck,,J. Squier,A.-C.Tien,K.R.Wilson,V.V.Yakovlev,and K.Yamakawa. Optics Letters . 1996
  • 6V.Bagnoud,and F.Salin. Applied Physics B Photophysics Laser Chemistry . 2000
  • 7H.Takada,M.Kakehata,and K.Torizuka. Optics Letters . 2006
  • 8Y.Leng,L.Lin,W.Wang,Y.Jiang,B.Tang,and Z. Xu. Opt.& Laser Technol . 2003
  • 9D.R.Preuss,and J.L.Gole. Applied Optics . 1980
  • 10L.M.Frantz,and J.S.Nodvik. Journal of Applied Physiology . 1963

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