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Coherent anti-Stokes Raman scattering under electric field stimulation

机译:电场刺激下相干反斯托克斯拉曼散射

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摘要

We introduce an experiment using electro-CARS, an electro-optical method based on the combination of ultrabroadband multiplex coherent anti-Stokes Raman scattering (M-CARS) spectroscopy and electric field stimulation. We demonstrate that this method can effectively discriminate the resonant CARS signal from the nonresonant background owing to a phenomenon of molecular orientation in the sample medium. Such molecular orientation is intrinsically related to the induction of an electric dipole moment by the applied static electric field. Evidence of the electro-CARS effect is obtained with a solution of n-alkanes (CnH2n+2, 15≤n≤40), for which an enhancement of the CARS signal-to-noise ratio is achieved in the case of CH2 and CH3 symmetric/asymmetric stretching vibrations. Additionally, an electric-field-induced second-harmonic generation experiment is performed in order to corroborate the orientational organization of molecules due to the electric field excitation. Finally, we use a simple mathematical approach to compare the vibrational information extracted from electro-CARS measurements with spontaneous Raman data and to highlight the impact of electric stimulation on the vibrational signal.
机译:我们介绍了一种使用电-CARS的实验,这是一种基于超宽带多路相干抗斯托克斯拉曼散射(M-CARS)光谱学和电场刺激相结合的电光方法。我们证明,由于样品介质中的分子取向现象,该方法可以有效地将共振CARS信号与非共振背景区分开。这种分子取向本质上与所施加的静电场对电偶极矩的感应有关。使用正构烷烃(CnH2n + 2,15≤n≤40)溶液可获得CARS电效应的证据,在CH2和CH3的情况下,CARS信噪比得以提高对称/非对称拉伸振动。另外,进行电场诱导的第二谐波产生实验以证实由于电场激发而引起的分子的取向组织。最后,我们使用一种简单的数学方法将从电CARS测量中提取的振动信息与自然拉曼数据进行比较,并突出显示电刺激对振动信号的影响。

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