arXiv · 2212.13690
Electronic-vibrational resonance does not alter steady-state transport in natural light-harvesting systems
Abstract
Oscillations in time-dependent 2D electronic spectra appear as evidence of quantum coherence in light-harvesting systems related to electronic-vibrational resonant interactions. Nature, however, takes place in a non-equilibrium steady-state, so the relevance of these arguments to the natural process is unclear. Here we examine the role of intramolecular vibrations in the non-equilibrium steady-state of photosynthetic dimers in the natural scenario of incoherent light excitation. It is found that vibrations resonant with the energy difference between exciton states do not increase the quantum yield nor the imaginary part of the intersite coherence that is relevant for transport compared with non-resonant vibrations in the natural non-equilibrium steady state. That is, the vibration-electronic resonance interaction does not alter energy transport under natural incoherent-light excitation conditions.
Explore related subjects
Keep this discovery
Leonardo F. Calderón, Chern Chuang, Paul Brumer. 2022-12-28. Electronic-vibrational resonance does not alter steady-state transport in natural light-harvesting systems. https://arxiv.org/abs/2212.13690
Cite the original work for its findings. Save a collection to share your selection of sources.