4.7 Article

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

Journal

JOURNAL OF CHEMICAL PHYSICS
Volume 147, Issue 21, Pages -

Publisher

AMER INST PHYSICS
DOI: 10.1063/1.5000823

Keywords

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Funding

  1. Singapore National Research Foundation through the Competitive Research Programme (CRP) [NRF-CRP5-2009-04]
  2. Singapore Ministry of Education Academic Research Fund [RG106/15]

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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.

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