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飞秒激光脉冲在正色散固体材料中的自压缩
引用本文:陈晓伟,朱毅,刘军,冷雨欣,葛晓春,李儒新,徐至展.飞秒激光脉冲在正色散固体材料中的自压缩[J].物理学报,2005,54(11):5178-5183.
作者姓名:陈晓伟  朱毅  刘军  冷雨欣  葛晓春  李儒新  徐至展
作者单位:(1)中国科学院上海光学精密机械研究所,强场激光物理国家重点实验室,上海 201800; (2)中国科学院上海光学精密机械研究所,强场激光物理国家重点实验室,上海 201801; (3)中国科学院上海光学精密机械研究所,强场激光物理国家重点实验室,上海 201802; (4)中国科学院上海光学精密机械研究所,强场激光物理国家重点实验室,上海 201803; (5)中国科学院上海光学精密机械研究所,强场激光物理国家重点实验室,上海 201804; (6)中国科学院上海光学精密机械研究所,强场激光物理国家重点实验室,上海 201805; (7)中国科学院上海光学精密
基金项目:国家自然科学基金(批准号:69925513, 19974058)、上海科技委员会基础研究重大项目资助的课题.
摘    要:实验研究了正色散固体介质中的激光脉冲自压缩现象,证明了无需任何外加色散补偿情况下,固体透明介质中的自聚焦传输过程可使高功率飞秒激光脉冲实现时域脉冲压缩,并详细研究了输出脉冲的时域和频域特性随入射脉冲强度的演化规律.实验结果表明脉冲自压缩量随入射脉冲强度的增加呈递增趋势,然而当入射光强增大到足以引起超连续谱及锥形辐射产生时,脉冲时域形状会发生分裂.此外还发现发散光束入射情况下同样可以观察到脉冲自压缩现象. 关键词: 超短激光脉冲 脉冲压缩 非线性传输

关 键 词:超短激光脉冲  脉冲压缩  非线性传输
文章编号:1000-3290/2005/54(11)/5178-06
收稿时间:1/4/2005 12:00:00 AM
修稿时间:2005-01-042005-04-19

Self-compression of femtosecond laser pulses in normally dispersive solid material
Chen Xiao-Wei,Zhu Yi,Liu Jun,Leng Yu-Xin,Ge Xiao-Chun,Li Ru-Xin,Xu Zhi-Zhan.Self-compression of femtosecond laser pulses in normally dispersive solid material[J].Acta Physica Sinica,2005,54(11):5178-5183.
Authors:Chen Xiao-Wei  Zhu Yi  Liu Jun  Leng Yu-Xin  Ge Xiao-Chun  Li Ru-Xin  Xu Zhi-Zhan
Institution:Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
Abstract:We have experimentally demonstrated the self-compression of gegawatt high power femtosecond laser pulses in normally dispersive solid bulk media. It was proved that high-power femtosecond laser pulses can be compressed during the self-focusing propagation in the transparent nonlinear medium. The self-compression behavior was investigated in detail under a variety of experimental conditions, and the temporal and spectral characteristics of resulted pulses are found to be significantly affected by the input pulse intensity, with higher intensity corresponding to shorter compressed pulse. However, the output pulse is split into two peaks when the input intensity is high enough to lead to supercontinuum and conical emission. By the propagation in a piece of BK7 glass, a self-compression from 50fs to 20fs is achieved, with a compression factor of about 2.5. Moreover, we find that pulse self-compression can be achieved with a divergent input laser beam into the glass.
Keywords:ultra-short laser pulse  pulse compression  nonlinear propagation
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