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arxiv: 2606.13404 · v1 · pith:CF6HGP43new · submitted 2026-06-11 · 🪐 quant-ph · physics.chem-ph

Characterizing the functional role of quantum coherence in energy transfer

classification 🪐 quant-ph physics.chem-ph
keywords transfercoherenceenergyquantumapproachroleactsapplying
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Quantum coherence is understood to play a role in excitation energy transfer in open quantum systems, yet a quantitative approach to assessing its influence on the transfer process is still missing. Using Nakajima-Zwanzig projection operators, we derive a general memory kernel identity that enables us to characterize and quantify the impact of coherence in the eigenenergy basis on a generalized rate of energy transfer. Applying our approach to the electronic dynamics of a dimer coupled to a structured phonon bath, we demonstrate how quantum coherence acts to modulate energy transfer.

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