4.6 Review Book Chapter

Semiclassical Path Integral Dynamics: Photosynthetic Energy Transfer with Realistic Environment Interactions

Journal

ANNUAL REVIEW OF PHYSICAL CHEMISTRY, VOL 67
Volume 67, Issue -, Pages 639-668

Publisher

ANNUAL REVIEWS
DOI: 10.1146/annurev-physchem-040215-112252

Keywords

semiclassical dynamics; path integral; coherent exciton dynamics; light harvesting systems; electron-phonon coupling; spectral density

Funding

  1. Division Of Chemistry [1301157] Funding Source: National Science Foundation

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This article reviews recent progress in the theoretical modeling of excitation energy transfer (EET) processes in natural light harvesting complexes. The iterative partial linearized density matrix path-integral propagation approach, which involves both forward and backward propagation of electronic degrees of freedom together with a linearized, short-time approximation for the nuclear degrees of freedom, provides an accurate and efficient way to model the nonadiabatic quantum dynamics at the heart of these EET processes. Combined with a recently developed chromophore-protein interaction model that incorporates both accurate ab initio descriptions of intracomplex vibrations and chromophore-protein interactions treated with atomistic detail, these simulation tools are beginning to unravel the detailed EET pathways and relaxation dynamics in light harvesting complexes.

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