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FIFTH-ORDER NONLINEAR SPECTROSCOPY ON THE LOW-FREQUENCY MODES OF LIQUID CS2

机译:液体CS2的低频模式的五阶非线性光谱

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We have observed fifth-order optical response from liquid CS2 by six-wave mixing with five different short pulses and investigated the inhomogeneity in the spectral broadening of the low-frequency intermolecular vibrational modes. There are a couple of distinct differences in the time profile of the fifth-order signal from that of the third-order signal. The fifth- and third-order signals obtained experimentally are compared with the prediction by the theory of Tanimura and Mukamel. We simulate the third- and fifth-order signals in the two cases, the homogeneous limit case and the partially inhomogeneously broadened case with a Gaussian distribution function. The experimental results can be reproduced well in terms of two vibrational modes, one overdamped mode in the homogeneous limit and one underdamped mode with an inhomogeneous width of 2.5 ps(-1). (C) 1996 American Institute of Physics. [References: 54]
机译:我们已经观察到液体CS2通过与五个不同的短脉冲进行六波混合而产生的五阶光学响应,并研究了低频分子间振动模式的光谱展宽中的不均匀性。五阶信号的时间曲线与三阶信号的时间曲线有几个明显的不同。将实验获得的五阶和三阶信号与Tanimura和Mukamel理论的预测结果进行比较。我们用高斯分布函数模拟两种情况下的三阶和五阶信号:齐次极限情况和部分不均匀加宽情况。在两种振动模式下,均能很好地再现实验结果,一种是在均质极限内的过阻尼模式,另一种是2.5 ps(-1)不均匀宽度的欠阻尼模式。 (C)1996年美国物理研究所。 [参考:54]

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