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Strongly coupled atom-cavity systems under boundary modulation: simulating gravitational-wave effects

Authors: Patryk Michalski, Jerzy Paczos, Navdeep Arya, Magdalena ZychPublished: 2026-08-19Paper ID: 2608.19333Category: quant-phLicense: CC BY 4.0

Abstract

One of the proposed platforms in which both quantum and general relativistic effects can become observable is an atom interacting with the electromagnetic field in a gravitational-wave background. The periodic modulation of field modes induced by variations of the spacetime metric modifies the atomic emission spectrum. Notably, the temporal modulation of the mode-frequency induced by a plane gravitational wave can be simulated through modulated boundary conditions, such as moving cavity mirrors. We analyze the impact of this modulation on atom-field interactions in the strong atom-cavity coupling regime, where Rabi oscillations occur. We show analytically that the modulation is resonantly enhanced, leading to measurable imprints in the atomic transition probability. This establishes a realistic and experimentally accessible platform for probing analogue general relativistic effects in quantum optical systems.

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