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DETECTING WAVE PACKET MOTION IN PUMP-PROBE EXPERIMENTS - THEORETICAL ANALYSIS

机译:探测泵实验中的波包运动-理论分析

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The Zelwail-Bersohn model [Ber. Bunsenges. Phys. Chem. 92, 373 (1988)] of pump-probe experiments is generalized to nonstationary wave packets and more realistic forms of probe pulses. The analysis illustrates the important role of probe linear chirp rare, as pointed out by Sterling, Zadoyan, and Apkarian [J. Chem. Phys. 104, 6497 (1996)], in detecting the motion of wave packets and the physical reason for the existence of optimal probe pulses to yield the best probe signal. Since the pump-probe process can be viewed as delayed two-photon resonant absorption, the probe signal can be readily optimized within the framework of quantum control theory, as-discussed by Yan [J. Chem. Phys. 100, 1094 (1994)]. Numerical calculations based on quantum control theory are used to confirm our theoretical predictions. We point out that the same analysis can be extended to other impulsive nonlinear optical processes, such as multiphoton pump-probe absorption and stimulated Raman scattering. (C) 1997 American Institute of Physics. [References: 32]
机译:Zelwail-Bersohn模型[Ber。 Bunsenges。物理化学92,373(1988)]将泵浦探针实验推广到非平稳波包和更现实形式的探测脉冲。分析表明,如Sterling,Zadoyan和Apkarian所指出的那样,探针线性rp非常重要。化学物理104,6497(1996)],在检测波包的运动和存在最佳探测脉冲以产生最佳探测信号的物理原因上。由于泵浦探测过程可以看作是延迟的双光子共振吸收,因此可以在量子控制理论的框架内轻松地优化探测信号,正如Yan所讨论的那样。化学物理100,1094(1994)]。基于量子控制理论的数值计算被用来证实我们的理论预测。我们指出,相同的分析可以扩展到其他脉冲非线性光学过程,例如多光子泵浦探针吸收和受激拉曼散射。 (C)1997美国物理研究所。 [参考:32]

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