Analytical solution of the disordered Tavis-Cummings model and its Fano resonances
M. Ahsan Zeb

TL;DR
This paper provides an exact analytical solution to the disordered Tavis-Cummings model, revealing how energetic disorder induces Fano resonances and affects polariton behavior in cavity quantum electrodynamics.
Contribution
It derives explicit expressions for bright and dark sectors in the disordered model and explores the transition from strong to weak coupling regimes with disorder.
Findings
Disorder transforms polaritons into broadened resonances.
Rabi splitting can occur even in the weak coupling regime.
Polariton linewidth shows a minimum when cavity leakage matches Fano broadening.
Abstract
emitters collectively coupled to a quantised cavity mode are described by the Tavis-Cummings model. We present complete analytical solution of the model in the presence of inhomogeneous couplings and energetic disorder. We derive the exact expressions for the bright and the dark sectors that decouple the disordered model and find that, in the thermodynamic limit, the energetic disorder transforms the bright sector to Fano's model that can be easily solved. We thoroughly explore the effects of energetic disorder assuming a Gaussian distribution of emitter transition energies. We compare the Fano resonances in optical absorption and inelastic electron scattering both in the weak and the strong coupling regimes. We study the evolution of the optical absorption with an increase in the disorder strength and find that it changes the lower and upper polaritons to their broadened…
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Taxonomy
TopicsStrong Light-Matter Interactions · Plasmonic and Surface Plasmon Research · Quantum Information and Cryptography
