A self-consistent input-output cavity-elimination method yields exact Purcell rates and effective non-Markovian atom dynamics that match full CQED simulations except in strong-coupling high-excitation.
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Squeezing-induced symmetry breaking exponentially amplifies nonreciprocity in cavity-reservoir systems, boosting quantum battery metrics and optical isolation by orders of magnitude.
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Cavity elimination in cavity-QED: a self-consistent input-output approach
A self-consistent input-output cavity-elimination method yields exact Purcell rates and effective non-Markovian atom dynamics that match full CQED simulations except in strong-coupling high-excitation.
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Enhancing Nonreciprocity through Squeezing-Induced Symmetry Breaking
Squeezing-induced symmetry breaking exponentially amplifies nonreciprocity in cavity-reservoir systems, boosting quantum battery metrics and optical isolation by orders of magnitude.