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肽和蛋白质中振动能量弛豫和退相的含时微扰理论。

Time-dependent perturbation theory for vibrational energy relaxation and dephasing in peptides and proteins.

作者信息

Fujisaki Hiroshi, Zhang Yong, Straub John E

机构信息

Department of Chemistry, Boston University, Boston, Massachusetts 02215, USA.

出版信息

J Chem Phys. 2006 Apr 14;124(14):144910. doi: 10.1063/1.2191038.

Abstract

Without invoking the Markov approximation, we derive formulas for vibrational energy relaxation (VER) and dephasing for an anharmonic system oscillator using a time-dependent perturbation theory. The system-bath Hamiltonian contains more than the third order coupling terms since we take a normal mode picture as a zeroth order approximation. When we invoke the Markov approximation, our theory reduces to the Maradudin-Fein formula which is used to describe the VER properties of glass and proteins. When the system anharmonicity and the renormalization effect due to the environment vanishes, our formulas reduce to those derived by and Mikami and Okazaki [J. Chem. Phys. 121, 10052 (2004)] invoking the path-integral influence functional method with the second order cumulant expansion. We apply our formulas to VER of the amide I mode of a small amino-acid like molecule, N-methylacetamide, in heavy water.

摘要

在不引入马尔可夫近似的情况下,我们使用含时微扰理论推导了非谐振子系统的振动能量弛豫(VER)和退相公式。由于我们将简正模图像作为零阶近似,系统 - 浴哈密顿量包含高于三阶的耦合项。当我们引入马尔可夫近似时,我们的理论简化为用于描述玻璃和蛋白质VER性质的Maradudin - Fein公式。当系统的非谐性和环境引起的重整化效应消失时,我们的公式简化为Mikami和Okazaki [J. Chem. Phys. 121, 10052 (2004)] 使用二阶累积量展开的路径积分影响泛函方法推导的公式。我们将我们的公式应用于重水中类似小氨基酸分子N - 甲基乙酰胺的酰胺I模式的VER。

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