Extended dissipaton theory for higher-order bath couplings and application to non-Condon spectroscopy with anharmonicity

Fuente: arXiv
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Autori principali: Zhu, Zi-Fan, Su, Yu, Wang, Yao, Xu, Rui-Xue, Yan, YiJing
Natura: Preprint
Pubblicazione: 2025
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author Zhu, Zi-Fan
Su, Yu
Wang, Yao
Xu, Rui-Xue
Yan, YiJing
author_facet Zhu, Zi-Fan
Su, Yu
Wang, Yao
Xu, Rui-Xue
Yan, YiJing
contents In this work, we develop an extended dissipaton theory that generalizes the environmental couplings beyond the conventional linear and quadratic forms, enabling the treatment of arbitrary order of bath couplings. Applying this theoretical framework to the condensed-phase non-Condon spectroscopy, we demonstrate the interplay of anharmonicity, non-Condon and solvent effects on optical spectra. Precise simulations are carried out with high efficiency on linear absorption spectra involving the above mentioned correlated effects. We exhibit how an anharmonic potential modulates the vibronic feature, offering insights into the role of nonlinear environmental couplings in spectroscopic signatures and exemplifying the success of the extended dissipaton formalism as an exact and efficient method for higher-order bath couplings.
format Preprint
id arxiv_https___arxiv_org_abs_2512_12584
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Extended dissipaton theory for higher-order bath couplings and application to non-Condon spectroscopy with anharmonicity
Zhu, Zi-Fan
Su, Yu
Wang, Yao
Xu, Rui-Xue
Yan, YiJing
Chemical Physics
Quantum Physics
In this work, we develop an extended dissipaton theory that generalizes the environmental couplings beyond the conventional linear and quadratic forms, enabling the treatment of arbitrary order of bath couplings. Applying this theoretical framework to the condensed-phase non-Condon spectroscopy, we demonstrate the interplay of anharmonicity, non-Condon and solvent effects on optical spectra. Precise simulations are carried out with high efficiency on linear absorption spectra involving the above mentioned correlated effects. We exhibit how an anharmonic potential modulates the vibronic feature, offering insights into the role of nonlinear environmental couplings in spectroscopic signatures and exemplifying the success of the extended dissipaton formalism as an exact and efficient method for higher-order bath couplings.
title Extended dissipaton theory for higher-order bath couplings and application to non-Condon spectroscopy with anharmonicity
topic Chemical Physics
Quantum Physics
url https://arxiv.org/abs/2512.12584