Optimal Conditions for Environment-Assisted Quantum Transport on the Fully Connected Network

Fuente: arXiv
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Main Authors: Alterman, Sam, Berman, Justin, Strauch, Frederick W.
Format: Preprint
Published: 2023
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author Alterman, Sam
Berman, Justin
Strauch, Frederick W.
author_facet Alterman, Sam
Berman, Justin
Strauch, Frederick W.
contents We present a theoretical analysis of the efficiency and rate of excitation transport on a network described by a complete graph in which every site is connected to every other. The long-time transport properties are analytically calculated for networks of arbitrary size that are symmetric except for the trapping site, start with a range of initial states, and are subject to dephasing and excitation decay. Conditions for which dephasing increases transport are identified, and optimal conditions are found for various physical parameters. The optimal conditions demonstrate robustness and a convergence of timescales previously observed in the context of light-harvesting complexes.
format Preprint
id arxiv_https___arxiv_org_abs_2309_00164
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Optimal Conditions for Environment-Assisted Quantum Transport on the Fully Connected Network
Alterman, Sam
Berman, Justin
Strauch, Frederick W.
Quantum Physics
We present a theoretical analysis of the efficiency and rate of excitation transport on a network described by a complete graph in which every site is connected to every other. The long-time transport properties are analytically calculated for networks of arbitrary size that are symmetric except for the trapping site, start with a range of initial states, and are subject to dephasing and excitation decay. Conditions for which dephasing increases transport are identified, and optimal conditions are found for various physical parameters. The optimal conditions demonstrate robustness and a convergence of timescales previously observed in the context of light-harvesting complexes.
title Optimal Conditions for Environment-Assisted Quantum Transport on the Fully Connected Network
topic Quantum Physics
url https://arxiv.org/abs/2309.00164