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首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >A Phase-Sensitive Detection Method Using Diffractive Optics for Polarization-Selective Femtosecond Raman Spectroscopy
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A Phase-Sensitive Detection Method Using Diffractive Optics for Polarization-Selective Femtosecond Raman Spectroscopy

机译:一种用于偏振选择性飞秒拉曼光谱的使用衍射光学的相敏检测方法

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摘要

A phase-sensitive detection method that uses two diffractive optics for femtosecond nonresonant Raman spectroscopy is demonstrated. One diffractive optic is used for generating the three input pulses for the third-order nonlinear experiment, and the second is used for recombining the signal with a passively phase-locked local oscillator derived from the probe pulse. This approach allows for phase-sensitive detection, direct phase calibration, control over all field polarizations, and removal of unwanted two-pulse signal contributions. Experiments on the intermolecular dynamics of CS_2 and CH_3CN demonstrate that the birefringent (in-quadrature) signal amplitude is significantly greater than the dichroic (in-phase) contribution. Polarization-selective measurements are used to project the isotropic birefringent response for CS_2, which suppresses reorientational dynamics and allows interaction-induced effects to be observed.
机译:演示了一种相敏检测方法,该方法使用两个衍射光学器件进行飞秒非共振拉曼光谱分析。一个衍射光学器件用于生成用于三阶非线性实验的三个输入脉冲,第二个衍射光学器件用于将信号与从探测脉冲得出的无源锁相本机振荡器重组。这种方法允许进行相位敏感的检测,直接的相位校准,对所有场极化的控制,以及消除不需要的两脉冲信号贡献。 CS_2和CH_3CN的分子间动力学实验表明,双折射(正交)信号幅度明显大于二向色(同相)贡献。偏振选择性测量用于投影CS_2的各向同性双折射响应,从而抑制了重定向运动并观察到相互作用引起的效应。

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