透明凝聚体介质中的超快四波光参量放大

A. Dubietis, G. Tamosauskas, G. Valiulis, A. Piskarskas
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引用次数: 3

摘要

本文简要介绍了具有克尔非线性的透明凝聚体介质中超短脉冲四波参量放大的最新进展。高效(10%至15%的泵-信号能量转换)四波光参量放大在水和熔融石英实验证明。放大过程得益于一维空间孤子传播机制,该机制是在圆柱束聚焦和非共线相位匹配几何结构与毫焦耳泵浦的适当结合下实现的。在这些工作条件下,强四波耦合抑制了灾难性的光束破裂和丝化,并且装置在非线性介质的损伤阈值以下合理地运行。与气体介质中的导波结构相比,所提出的方法具有许多优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultrafast Four-Wave Optical Parametric Amplification in Transparent Condensed Bulk Media
We present a short overview of recent advances in ultrashort pulse four-wave optical parametric amplification in transparent condensed bulk media with Kerr nonlinearity. Highly efficient (10% to 15% pump-to-signal energy conversion) four-wave optical parametric amplification in water and fused silica is experimentally demonstrated. The amplification process highly benefits from 1-dimensional spatial soliton propagation regime, which sets in under proper combination of cylindrical beam focusing and noncollinear phase matching geometry with millijoule pumping. Under these operating conditions, strong four-wave coupling quenches catastrophic beam break-up and filamentation, and the setup operates reasonably below the damage threshold of the nonlinear medium. The proposed methodology offers a number of advantages as compared to guided-wave configurations in gaseous media.
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