Perspective on Many-Body Methods for Molecular Polaritonic Systems

Autor
Bauman, Nicholas
Cunha, Leonardo A.
Deprince III, A. Eugene
Flick, Johannes
Foley, Jonathan J.
Govind, Niranjan
Groenhof, Gerrit
Hoffmann, Norah
Kowalski, Karol
Li, Xiaosong
Liebenthal, Marcus
Maitra, Neepa T.
Manderna, Ruby
Matoušek, Mikuláš
Mazin, Ilia M.
Mejia-Rodriguez, Daniel
Panyala, Ajay
Peng, Bo
Peyton, Benjamin
Veis, Libor
Vu, Nam
Weidman, Jared D.
Wilson, Angela K.
Zarotiadis, Rhiannon A.
Zhang, Yu
Datum vydání
2025Publikováno v
Journal of Chemical Theory and ComputationNakladatel / Místo vydání
American Chemical SocietyRočník / Číslo vydání
21 (20)ISBN / ISSN
ISSN: 1549-9618ISBN / ISSN
eISSN: 1549-9626Informace o financování
UK//COOP
Metadata
Zobrazit celý záznamKolekce
Tato publikace má vydavatelskou verzi s DOI 10.1021/acs.jctc.5c00801
Abstrakt
Recent advances in strong light-matter interactions have revealed a wealth of new physical phenomena in molecules embedded in optical cavities, including modified chemical reactivity, altered excitation spectra, and novel quantum correlations. To describe these effects from first-principles, the field of ab initio quantum electrodynamics (QED) has emerged as a compelling extension of quantum chemistry that treats electronic and photonic degrees of freedom on equal footing. In this Perspective, we review the growing landscape of many-body QED methods, including Hartree-Fock, density functional theory (QEDFT), time-dependent DFT (QED-TDDFT), configuration interaction (QED-CI), complete active space (QED-CASSCF), coupled cluster (QED-CC), quantum Monte Carlo (QED-QMC), and density matrix renormalization group (QED-DMRG), highlighting recent developments and implementations. We further explore real-time methods, gradient and Hessian formalisms, and the integration of nonadiabatic nuclear dynamics. Applications range from benchmark simulations of polaritonic chemistry to quantum simulations on emerging quantum hardware. We conclude by outlining future directions for theory development and interdisciplinary efforts at the interface of quantum chemistry, condensed matter, and quantum optics.
Klíčová slova
matrix renormalization-group, density-functional theory, light-matter interactions, coupled-cluster theory, electron-gas, quantum-electrodynamics, dynamics simulations, perturbation-theory, python framework, cavities
Trvalý odkaz
https://hdl.handle.net/20.500.14178/3557Licence
Licence pro užití plného textu výsledku: Creative Commons Uveďte původ 4.0 International