quantum optics

Beating the Bad-Cavity Limit via Auxiliary-Emitter Linewidth Squeezing

arXiv:2607.27878

summary

The paper proposes adding two detuned auxiliary emitters to a low‑Q cavity to create a subradiant mode that narrows the effective cavity linewidth, enabling strong‑coupling phenomena such as prolonged vacuum Rabi oscillations even in a nominally weak‑coupling (bad‑cavity) regime.

Abstract

Strong coupling in cavity QED is conventionally achieved at the expense of either high cavity quality factors or ultrasmall mode volumes, a trade-off that fundamentally constrains practical implementations. Here, we circumvent this limitation by introducing two nonidentical auxiliary emitters with opposite detunings into a bad cavity. This hybrid system supports a subradiant mode that significantly squeeze the effective cavity linewidth, creating an ultra-narrow transmission window at the cavity frequency. As a result, a target emitter placed in this engineered environment exhibits prolonged vacuum Rabi oscillations and resolved spontaneous emission splitting, which are clear signatures of strong coupling, even though the bare cavity remains in the weak-coupling regime. Our scheme thus transforms a bad cavity into an effective platform for strong-coupling physics, with potential applications in quantum computation and quantum sensing.

Topics & keywords

#cavity qed#strong coupling#bad cavity#linewidth squeezing#subradiant mode#quantum sensingauxiliary emittersdetuningvacuum rabi oscillationstransmission windowspontaneous emission splitting
Beating the Bad-Cavity Limit via Auxiliary-Emitter Linewidth Squeezing · wovepaper