Four wave mixing spectroscopy for a multilevel system

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99
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105

초록

We present a theory of the four-wave-mixing (FWM) spectroscopy for the multilevel system coupled to the bath with arbitrary time scale, in contrast to most previous work that assumes the fast bath dynamic limit (motionally narrowed limit). Exact quantum mechanical expressions for the relevant nonlinear response tensor and the nonlinear polarization vector are obtained for a model Hamiltonian. Effects of molecular rotation and the polarization directions of the input radiation fields are also fully taken into account. The results show how the cross correlation as well as the autocorrelation functions of the fluctuations in the energy-gaps or transition frequencies between eigenstates contribute to the FWM spectroscopy. The result is applied to three-pulse echo spectroscopy. We examine the results for a variety of model spectral density functions, and recover the results of the previously reported theories as limiting cases. (C) 2001 American Institute of Physics.

키워드

Eigenvalues And Eigenfunctions; Energy Gap; Hamiltonians; Molecular Orientation; Polarization; Quantum Theory; Spectroscopic Analysis; Tensors; Echo Spectroscopy; Multilevel System; Transition Frequencies; Four Wave Mixing; 2-DIMENSIONAL VIBRATIONAL SPECTROSCOPY; 3-PULSE PHOTON-ECHOES; DOMAIN RESONANT SPECTROSCOPIES; NONLINEAR RESPONSE FUNCTION; TIME-DOMAIN; SPECTRAL DIFFUSION; INTRAMOLECULAR VIBRATIONS; TEMPERATURE-DEPENDENCE; MOLECULAR-DYNAMICS; OPTICAL-DYNAMICS
제목
Four wave mixing spectroscopy for a multilevel system
저자
Sung, Jaeyoung; Silbey, Robert J.
DOI
10.1063/1.1413979
발행일
2001-11
유형
Article
저널명
The Journal of Chemical Physics
권
115
호
20
페이지
9266 ~ 9287