Division of Materials Science, Nanyang Technological University, Singapore 639798, Singapore.
J Chem Phys. 2017 Dec 7;147(21):214102. doi: 10.1063/1.5000823.
Combining the multiple Davydov D 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.
我们将多 Davydov D 假设与热场动力学方法相结合,研究了晶格上 Holstein 极化子的有限温度动力学。使用运动方程层次方法作为基准,已经证明我们的方法在对角和非对角激子-声子耦合同时存在的情况下,为 Holstein 极化子的有限温度动力学提供了一种有效、稳健的描述。热场动力学方法在 Hilbert 空间中处理温度效应,与基于 Liouville 空间中的量子主方程或使用 Monte Carlo 重要性抽样进行波函数传播的其他有限温度动力学处理方法相比具有关键的数值优势。虽然对于弱到中等的对角耦合,温度升高会抑制极化子的迁移率,但发现非对角耦合会诱导在高温下占主导地位的声子辅助输运。平均平方位移的结果表明,能带输运特征主导着对角耦合情况,并且当包括非对角耦合时,随着温度的升高,从能带输运到跳跃输运的转变。作为概念验证,我们的理论为分子晶体中的相干和非相干输运提供了统一的处理方法,并且适用于任何温度。