arXiv · 2104.06786
Correlated vibration-solvent effects on the non-Condon exciton spectroscopy
Abstract
Excitation energy transfer is crucially involved in a variety of systems. During the process, the non-Condon vibronic coupling and the surrounding solvent interaction may synergetically play important roles. In this work, we study the correlated vibration-solvent influences on the non-Condon exciton spectroscopy. Statistical analysis is elaborated for the overall vibration-plus-solvent environmental effects. Analytic solutions are derived for the linear absorption of monomer systems. General simulations are accurately carried out via the dissipaton-equation-of-motion approach. The resulted spectra in either the linear absorption or strong field regime clearly demonstrate the coherence enhancement due to the synergetic vibration-solvent correlation.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Zi-Hao Chen, Yao Wang, Rui-Xue Xu, YiJing Yan. 2021-05-30. Correlated vibration-solvent effects on the non-Condon exciton spectroscopy. https://doi.org/10.1063/5.0053169
Cite the original work for its findings. Save a collection to share your selection of sources.