Publication | Open Access
Detectability of Dissipative Motion in Quantum Vacuum via Superradiance
97
Citations
36
References
2006
Year
Quantum SciencePhotonicsQuantum PhotonicsMechanical EnergyQuantum ComputingPhysicsEngineeringQuantum VacuumNatural SciencesCavity QedApplied PhysicsQuantum Mechanical PropertyQuantum EntanglementVacuum-induced Dissipative MotionQuantum SensingQuantum OpticQuantum Decoherence
We propose an experiment for generating and detecting vacuum-induced dissipative motion. A high frequency mechanical resonator driven in resonance is expected to dissipate mechanical energy in quantum vacuum via photon emission. The photons are stored in a high quality electromagnetic cavity and detected through their interaction with ultracold alkali-metal atoms prepared in an inverted population of hyperfine states. Superradiant amplification of the generated photons results in a detectable radio-frequency signal temporally distinguishable from the expected background.
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