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Efficient Generation of Spectrum-Manipulated Few-Cycle Laser Pulses through Cascaded Dual-Chirped OPA

机译:通过级联双啁啾OPA高效地产生光谱操作的几循环激光脉冲

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摘要

The cascaded dual-chirped optical parametric amplification (DC-OPA) is presented for efficient generation of few-cycle infrared (IR) laser pulses. The input pulses are strategically chirped to optimize the phase-matching bandwidth in each nonlinear crystal, and four regions of the signal spectrum are amplified in cascaded crystals with different cutting angles, enabling flexible manipulation of the output spectrum. Broadband gain and high conversion efficiency are simultaneously achieved owing to the cascaded-crystal arrangement, the signal pulse duration of 4.2 cycles is obtained with 11.7-mJ pulse energy, corresponding to a conversion efficiency of 39.0%. The proposed scheme offers a robust and simple approach to pushing the phase-matching bandwidth limits introduced by the nonlinear crystal, which manifests great prospect in various researches involving ultrafast optics and strong-field physics.
机译:级联双啁啾光学参数(DC-OPA)被提出用于有效地产生几循环红外(IR)激光脉冲。输入脉冲是策略性的,以优化每个非线性晶体中的相位匹配带宽,并且信号谱的四个区域在具有不同切割角的级联晶体中放大,从而能够灵活地操纵输出频谱。由于级联晶体布置同时实现了宽带增益和高转换效率,以11.7mJ脉冲能量获得4.2个循环的信号脉冲持续时间,对应于39.0%的转化效率。该拟议方案提供了一种强大而简单的方法,可以推动非线性晶体引入的相位匹配带宽限制,这在涉及超快光学和强大的物理学的各种研究中表现出巨大的前景。

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