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Enhancing Acceleration Radiation from Ground-State Atoms via Cavity Quantum Electrodynamics

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arxiv quant-ph/0305178 v1 pith:CMWKLBE5 submitted 2003-05-29 quant-ph

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keywords radiationatomscavitystateaccelerationconditionsintensityproduced
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When ground state atoms are accelerated through a high Q microwave cavity, radiation is produced with an intensity which can exceed the intensity of Unruh acceleration radiation in free space by many orders of magnitude. The cavity field at steady state is described by a thermal density matrix under most conditions. However, under some conditions gain is possible, and when the atoms are injected in a regular fashion, the radiation can be produced in a squeezed state.

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  1. Kappa Plane Wave Modes and Continuous Squeezing in Quantum Field Theory

    hep-th 2025-07 conditional novelty 4.0 of 10

    A one-parameter family of flat-spacetime vacua, built from Minkowski plane waves with exponential weights, is shown to be a continuous-mode squeezed vacuum with tanh r(ν) = e^(−πν/κ), reducing to the Minkowski vacuum as κ→0.

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