首页> 外文会议>Advanced Laser Technologies 2005 pt.1 >Ultra-broadband optical parametric chirped pulse amplification by the matching of both the group velocity and pulse front
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Ultra-broadband optical parametric chirped pulse amplification by the matching of both the group velocity and pulse front

机译:通过群速度和脉冲前沿的匹配实现超宽带光参量pulse脉冲放大

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The problem of phase-mismatch-compensation for ultra-broadband OPCPA is first studied theoretically by us, and a scheme for phase-mismatch-compensation is proposed, which is based on the matching of both the group velocity and pulse front between signal and idler by the combination of the no collincar-phasc-match and pulse-front-till that is accomplished by angular dispersion of the interacting rays. By this Scheme, the phase mismatch to first order in frequency shift can be completely compensated, and then an ultra-broadband OPCPA is realized. It is shown that the phase mismatch to both first and second order can be completely compensated simultaneously in some cases, and this leads to an extremely broadband spectral width. Therefore the important criterion for constructing an ultra-broadband OPCPA that both pulse-front and group-velocity between signal and idler are exactly matched simultaneously. Finally, specific numerical calculations and simulations are presented for BBO-OPCPA with type-Ⅰ noncollinear angularly dispersed geometry.
机译:我们首先从理论上研究了超宽带OPCPA的相位不匹配补偿问题,提出了一种基于信号和惰轮之间的群速度和脉冲前沿匹配的相位不匹配补偿方案。通过无collincar-phasc匹配和脉冲前沿耕作的组合,这是通过相互作用光线的角度色散实现的。通过该方案,可以完全补偿频移到一阶的相位失配,从而实现了超宽带OPCPA。结果表明,在某些情况下,一阶和二阶的相位失配可以同时得到完全补偿,这导致了非常宽的频谱宽度。因此,构建超宽带OPCPA的重要标准是同时精确匹配信号和惰轮之间的脉冲前沿和群速度。最后,给出了具有Ⅰ类非共线角度分散几何结构的BBO-OPCPA的具体数值计算和仿真。

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