Spatio-spectral characterization of ultrashort laser pulses with a birefringent delay line

IF 1.6 Q3 OPTICS
OSA Continuum Pub Date : 2021-06-19 DOI:10.1364/osac.430432
S. Jolly, O. Gobert, F. Quéré
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引用次数: 4

Abstract

We utilize a birefringent delay line to perform spatially-resolved Fourier transform spectroscopy at multiple planes around the focus of an ultrashort laser pulse. Combining these measurements at multiple planes with phase-retrieval, i.e. the INSIGHT technique, allows for the determination of the three-dimensional laser field, in both amplitude and phase, lacking only the knowledge of a spatially-uniform spectral phase. We use the device to simultaneously measure two low-order spatio-temporal couplings resulting from a misaligned chromatic lens doublet. Besides being a new implementation of spatio-spectral characterization of ultrashort pulses, this technique allows for more accuracy and stability in spatio-spectral characterization and a push to shorter wavelengths, and may ultimately enable sparse measurements.
具有双折射延迟线的超短激光脉冲的空间光谱特性
我们利用双折射延迟线在超短激光脉冲焦点周围的多个平面上执行空间分辨傅立叶变换光谱。将多个平面上的这些测量与相位检索相结合,即INSIGHT技术,可以确定三维激光场的振幅和相位,而只需要知道空间均匀的光谱相位。我们使用该设备同时测量由未对准的彩色透镜倍频器引起的两个低阶时空耦合。除了是超短脉冲空间光谱表征的新实现外,该技术还允许空间光谱表征具有更高的准确性和稳定性,并推动更短的波长,并可能最终实现稀疏测量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
OSA Continuum
OSA Continuum OPTICS-
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