Understanding the polaritonic ground state in cavity quantum electrodynamics

T Tor S. Haugland (Department of Chemistry, Norwegian University of Science and Technology 1 , 7491 Trondheim,) J John P. Philbin (College of Letters and Science, University of California 2 , Los Angeles, California 90095,) T Tushar K. Ghosh (Department of Chemistry, Purdue University 3 , West Lafayette, Indiana 47907,) M Ming Chen H Henrik Koch (Department of Chemistry, Norwegian University of Science and Technology, NTNU 1 , 7491 Trondheim,) P Prineha Narang

Abstract

Molecular polaritons arise when molecules interact so strongly with light that they become entangled with each other. This light–matter hybridization alters the chemical and physical properties of the molecular system and allows chemical reactions to be controlled without the use of external fields. We investigate the impact of strong light–matter coupling on the electronic structure using perturbative approaches and demonstrate that Rayleigh–Schrödinger perturbation theory can reproduce the ground state energies in optical cavities to comparable accuracy as ab initio cavity quantum electrodynamics methodologies for currently relevant coupling strengths. The method is effective in both low and high cavity frequency regimes and straightforward to implement via response functions. Furthermore, we establish simple relations between cavity-induced intermolecular forces and van der Waals forces. These findings provide valuable insight into the manipulation of ground-state polaritonic energy landscapes, shedding light on the systems and conditions in which modifications can be achieved.

Article Details

Volume / Issue Vol. 162, Issue 19
Published May 21, 2025
ISSN 0021-9606
Publisher American Institute of Physics

Journal Info

The Journal of Chemical Physics

American Institute of Physics

ISSN: 0021-9606 Physical Sciences

Authors (6)

T

Tor S. Haugland

Department of Chemistry, Norwegian University of Science and Technology 1 , 7491 Trondheim,

J

John P. Philbin

College of Letters and Science, University of California 2 , Los Angeles, California 90095,

T

Tushar K. Ghosh

Department of Chemistry, Purdue University 3 , West Lafayette, Indiana 47907,

M

Ming Chen

H

Henrik Koch

Department of Chemistry, Norwegian University of Science and Technology, NTNU 1 , 7491 Trondheim,

P

Prineha Narang