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用于宽带红外脉冲表征的频率分辨光学开关的光谱相位灵敏度。

Spectral phase sensitivity of frequency resolved optical switching for broadband IR pulse characterization.

作者信息

Longa Adrien, Kumar Mayank, Lassonde Philippe, Ibrahim Heide, Legare Francois, Leblanc Adrien

出版信息

Opt Express. 2022 Feb 28;30(5):7968-7975. doi: 10.1364/OE.451522.

Abstract

In this work, we demonstrate the sensitivity of the frequency-resolved optical switching (FROSt) technique to detect a small amount of spectral phase shift for the precise characterization of ultrashort laser pulses. We characterized fs pulses centered at 1.75 µm that are spectrally broadened up to 700 nm of bandwidth in a hollow-core fiber and subsequently compressed down to 2.3 optical cycle duration by propagation in the air at atmospheric pressure. By inserting thin fused silica windows of different thicknesses in the beam path, we accurately retrieve group delay dispersion (GDD) variations as small as 10 fs. Such GDD variations correspond to a change of the pulse duration of only 0.2 fs for a Fourier transform limited 2-cycle pulse at 1.75 µm (i.e., 11.8 fs). The capability to measure such tiny temporal variations thus demonstrates that the FROSt technique has sufficient sensitivity to precisely characterize single-cycle pulses.

摘要

在这项工作中,我们展示了频率分辨光开关(FROSt)技术对于检测少量光谱相移的灵敏度,以用于超短激光脉冲的精确表征。我们对中心波长为1.75 µm的飞秒脉冲进行了表征,这些脉冲在空心光纤中光谱展宽至700 nm带宽,随后在大气压力下于空气中传播并压缩至2.3个光学周期的持续时间。通过在光路中插入不同厚度的薄熔融石英窗口,我们精确地获取了低至10 fs的群延迟色散(GDD)变化。对于1.75 µm处傅里叶变换极限的2周期脉冲(即11.8 fs),这种GDD变化仅对应于脉冲持续时间0.2 fs的变化。测量如此微小的时间变化的能力表明,FROSt技术具有足够的灵敏度来精确表征单周期脉冲。

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