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Spectral and statistical properties of collective resonance fluorescence in a squeezed vacuum

A S Shumovsky and Tran Ouang

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The authors discuss the problem of collective resonance fluorescence of N driven atoms which are damped by a white squeezed noise. Analytical formulae for the spectrum of resonance fluorescence and for the degree of second-order coherence for spectral lines are calculated. The narrowing or expansion of linewidths and the asymmetry of the spectrum caused by the squeezed vacuum are shown.


PACS

32.50.+d Fluorescence, phosphorescence (including quenching)

32.70.Jz Line shapes, widths, and shifts

42.50.Ar Photon statistics and coherence theory

31.15.-p Calculations and mathematical techniques in atomic and molecular physics

32.70.Fw Absolute and relative intensities

Subjects

Atomic and molecular physics

Computational physics

Optics, quantum optics and lasers

Dates

Issue 1 (14 January 1989)



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