Tuning polariton splitting in a chaotic Tavis-Cummings model produces a low-coupling thermalizing regime driven by quantum chaos and a high-coupling non-thermalizing regime that suppresses ergodicity, with direct effects on cavity photon correlations.
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quant-ph 2years
2026 2verdicts
UNVERDICTED 2representative citing papers
Entangled-photon-pair excitation plus time-frequency-filtered two-photon counting is proposed as a way to prepare and track narrowband two-exciton populations in dissipative molecular aggregates.
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Thermalization Regimes in a Chaotic Tavis-Cummings Model
Tuning polariton splitting in a chaotic Tavis-Cummings model produces a low-coupling thermalizing regime driven by quantum chaos and a high-coupling non-thermalizing regime that suppresses ergodicity, with direct effects on cavity photon correlations.
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Entangled photon pair excitation and time-frequency-filtered multidimensional photon correlation spectroscopy as a probe for dissipative exciton kinetics
Entangled-photon-pair excitation plus time-frequency-filtered two-photon counting is proposed as a way to prepare and track narrowband two-exciton populations in dissipative molecular aggregates.