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Linear and non-linear infrared response of one-dimensional vibrational Holstein polarons in the anti-adiabatic limit: Optical and acoustical phonon models

机译:一维振动荷斯坦浓度在抗绝热极限中的线性和非线性红外响应:光学和声学声子模型

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摘要

The theory of linear and non-linear infrared response of vibrational Holstein polarons in one-dimensional lattices is presented in order to identify the spectral signatures of self-trapping phenomena. Using a canonical transformation, the optical response is computed from the small polaron point of view which is valid in the anti-adiabatic limit. Two types of phonon baths are considered: optical phonons and acoustical phonons, and simple expressions are derived for the infrared response. It is shown that for the case of optical phonons, the linear response can directly probe the polaron density of states. The model is used to interpret the experimental spectrum of crystalline acetanilide in the C=O range. For the case of acoustical phonons, it is shown that two bound states can be observed in the two-dimensional infrared spectrum at low temperature. At high temperature, analysis of the time-dependence of the two-dimensional infrared spectrum indicates that bath mediated correlations slow down spectral diffusion. The model is used to interpret the experimental linear-spectroscopy of model alpha-helix and beta-sheet polypeptides. This work shows that the Davydov Hamiltonian cannot explain the observations in theNHstretching range. Published by AIP Publishing.
机译:介绍了一维格子中振动荷斯坦极性的线性和非线性红外响应理论,以识别自捕获现象的光谱特征。使用规范转换,从小偏光焦点计算光学响应,这在抗绝热极限中有效。考虑两种类型的声子浴:光学声子和声学声子,并且为红外响应导出了简单的表达式。结果表明,对于光学声音的情况,线性响应可以直接探测状态的极化密度。该模型用于解释C = O系列中结晶乙酰苯乙烯的实验光谱。对于声学声子的情况,示出了在低温下可以在二维红外光谱中观察到两个绑定状态。在高温下,分析二维红外光谱的时间依赖性表明浴介导的相关性减慢光谱扩散。该模型用于解释模型α-螺旋和β-片多肽的实验线性光谱。这项工作表明,Davydov Hamiltonian无法解释Thentretch的范围内的观察。通过AIP发布发布。

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