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用于超快光谱学的宽带声光调制器4-f脉冲整形器的双光谱相位和衍射角补偿

Dual spectral phase and diffraction angle compensation of a broadband AOM 4-f pulse-shaper for ultrafast spectroscopy.

作者信息

Jones Andrew C, Kunz Miriam Bohlmann, Tigges-Green Isabelle, Zanni Martin T

出版信息

Opt Express. 2019 Dec 23;27(26):37236-37247. doi: 10.1364/OE.27.037236.

Abstract

AOM-based pulse shaping as a method has been shown to provide many advantages in the field of ultrafast spectroscopy, in particular for the creation of phase matched pulse pairs for two-dimensional IR and electronic spectroscopy. In this paper we demonstrate the capabilities of a quartz-based AOM pulse-shaper to provide fine control over the phase and spatial dispersion of ultrafast supercontinuum pulses. We show that by using the Bragg condition, we can define a mask function for our AOM such that the angle of diffraction is constant for all frequencies. By summing all the contributions to spectral phase due to normal and anomalous dispersion of our optical components, and taking into account the intrinsic frequency dependent phase as a result of the acoustic sine wave propagating through the AOM, we can determine an optimal mask function that meets the Bragg condition for all frequencies, and generates compressed (∼50 fs) supercontinuum pulses.

摘要

基于声光调制器(AOM)的脉冲整形作为一种方法,已被证明在超快光谱领域具有诸多优势,特别是在为二维红外光谱和电子光谱创建相位匹配脉冲对方面。在本文中,我们展示了基于石英的AOM脉冲整形器对超快超连续谱脉冲的相位和空间色散进行精细控制的能力。我们表明,通过利用布拉格条件,我们可以为AOM定义一个掩模函数,使得所有频率的衍射角保持恒定。通过将光学元件的正常色散和反常色散对光谱相位的所有贡献相加,并考虑到由于声正弦波通过AOM传播而产生的固有频率相关相位,我们可以确定一个满足所有频率布拉格条件并产生压缩(约50飞秒)超连续谱脉冲的最佳掩模函数。

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