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Adaptive acousto-optic technique for femtosecond laser pulse shaping

机译:飞秒激光脉冲整形的自适应声光技术

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摘要

We discuss the theoretical and experimental investigation of acousto-optic dispersive tunable filters, based on quasi-collinear geometry of light-sound interaction in a tellurium dioxide single crystal. The geometry uses the effect of strong acoustic anisotropy in the paratellurite as well as peculiarities of acoustic wave reflections at the free boundary of the crystal. A mathematical concept for determination of optical, electrical, and constructional parameters of the filters is developed. Different experimental acousto-optic filters intended for femtosecond pulse shaping are designed and tested. Preliminary experiments are performed in a subpetawatt optical parametric chirped pulse amplification laser system. The experimental data conform completely with the predicted data.
机译:我们讨论了基于二氧化碲单晶中光声相互作用的准共线性几何学的声光色散可调滤波器的理论和实验研究。这种几何形状利用了卫星上强烈的声各向异性以及晶体自由边界处的声波反射特性。建立了用于确定滤光器的光学,电学和构造参数的数学概念。设计并测试了用于飞秒脉冲整形的不同实验声光滤波器。初步实验是在亚拍瓦级光学参量chi脉冲放大激光系统中进行的。实验数据与预测数据完全一致。

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