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利用随机非线性晶体中的横向二次谐波产生对超短激光脉冲进行表征的单次d扫描技术。

Single-shot d-scan technique for ultrashort laser pulse characterization using transverse second-harmonic generation in random nonlinear crystals.

作者信息

Salgado-Remacha F J, Alonso B, Crespo H, Cojocaru C, Trull J, Romero R, López-Ripa M, Guerreiro P T, Silva F, Miranda M, L'Huillier A, Arnold C L, Sola Í J

出版信息

Opt Lett. 2020 Jul 15;45(14):3925-3928. doi: 10.1364/OL.397033.

Abstract

We demonstrate a novel dispersion-scan (d-scan) scheme for single-shot temporal characterization of ultrashort laser pulses. The novelty of this method relies on the use of a highly dispersive crystal featuring antiparallel nonlinear domains with a random distribution and size. This crystal, capable of generating a transverse second-harmonic signal, acts simultaneously as the dispersive element and the nonlinear medium of the d-scan device. The resulting in-line architecture makes the technique very simple and robust, allowing the acquisition of single-shot d-scan traces in real time. The retrieved pulses are in very good agreement with independent frequency-resolved optical grating measurements. We also apply the new single-shot d-scan to a terawatt-class laser equipped with a programmable pulse shaper, obtaining an excellent agreement between the applied and the d-scan retrieved dispersions.

摘要

我们展示了一种用于超短激光脉冲单次时间表征的新型色散扫描(d扫描)方案。该方法的新颖之处在于使用了一种具有高度色散的晶体,其具有随机分布和尺寸的反平行非线性畴。这种能够产生横向二次谐波信号的晶体,同时充当d扫描装置的色散元件和非线性介质。由此产生的同轴架构使该技术非常简单且稳健,能够实时获取单次d扫描轨迹。所恢复的脉冲与独立的频率分辨光学光栅测量结果非常吻合。我们还将新的单次d扫描应用于配备可编程脉冲整形器的太瓦级激光器,在所施加的色散和d扫描恢复的色散之间获得了极佳吻合。

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