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Coherence in Spontaneous Radiation Processes

Physical Review · 1954 · Vol. 93(1) · pp. 99–110
R. H. Dicke

Abstract

By considering a radiating gas as a single quantum-mechanical system, energy levels corresponding to certain correlations between individual molecules are described. Spontaneous emission of radiation in a transition between two such levels leads to the emission of coherent radiation. The discussion is limited first to a gas of dimension small compared with a wavelength. Spontaneous radiation rates and natural line breadths are calculated. For a gas of large extent the effect of photon recoil momentum on coherence is calculated. The effect of a radiation pulse in exciting "super-radiant" states is discussed. The angular correlation between successive photons spontaneously emitted by a gas initially in thermal equilibrium is calculated.

Laser-Matter Interactions and ApplicationsSpectroscopy and Quantum Chemical StudiesQuantum optics and atomic interactionsPhysicsCoherence (philosophical gambling strategy)RadiationPhotonRecoilAtomic physicsSpontaneous emissionWavelengthQuantumCoherence length
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Physical Review · 1946 · 3,465 citations
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