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Finite temperature dynamics of a Holstein polaron: The thermo-field dynamics approach

机译:Holstein Polaron的有限温度动态:热场动力学方法

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Combining the multiple Davydov D-2 Ansatz with the method of thermo-field dynamics, we study finite temperature dynamics of a Holstein polaron on a lattice. It has been demonstrated, using the hierarchy equations of motion method as a benchmark, that our approach provides an efficient, robust description of finite temperature dynamics of the Holstein polaron in the simultaneous presence of diagonal and off-diagonal exciton-phonon coupling. The method of thermo-field dynamics handles temperature effects in the Hilbert space with key numerical advantages over other treatments of finite-temperature dynamics based on quantum master equations in the Liouville space or wave function propagation with Monte Carlo importance sampling. While for weak to moderate diagonal coupling temperature increases inhibit polaron mobility, it is found that off-diagonal coupling induces phonon-assisted transport that dominates at high temperatures. Results on the mean square displacements show that band-like transport features dominate the diagonal coupling cases, and there exists a crossover from band-like to hopping transport with increasing temperature when including off-diagonal coupling. As a proof of concept, our theory provides a unified treatment of coherent and incoherent transport in molecular crystals and is applicable to any temperature. Published by AIP Publishing.
机译:将多个Davydov D-2 Ansatz与热场动态的方法相结合,研究了晶格上Holstein Polaron的有限温度动态。已经使用运动方法的层次结构作为基准测试,我们的方法在同时存在对角线和非对角角激素 - 声子耦合的同时存在中提供了霍尔斯坦极化子的有限温度动态的有效,稳健的有限动态的高效描述。热场动力学的方法在利伯特空间或蒙特卡罗重要性采样中的Quouville空间或波函数传播中的有限温度动态的其他治疗中的关键数值优势处理Hilbert空间中的温度效应。虽然对于弱到中等对角线耦合温度升高,但是发现偏离对角线耦合诱导位于高温下占主导地位的声子辅助运输。结果均方位移显示,带状传送特征主导对角线耦合壳体,并且当包括偏差耦合时,在带状到跳跃传输的交叉跳跃。作为一个概念证明,我们的理论提供了分子晶体的相干和不连贯的交通的统一处理,适用于任何温度。通过AIP发布发布。

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