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Quantum propagation in single mode fiberThis paper presents a theory for quantum light propagation in a single-mode fiber which includes the effects of the Kerr nonlinearity, group-velocity dispersion, and linear loss. The theory reproduces the results of classical self-phase modulation, quantum four-wave mixing, and classical solution physics, within their respective regions of validity. It demonstrates the crucial role played by the Kerr-effect material time constant, in limiting the quantum phase shifts caused by the broadband zero-point fluctuations that accompany any quantized input field. Operator moment equations - approximated, numerically, via a terminated cumulant expansion - are used to obtain results for homodyne-measurement noise spectra when dispersion is negligible. More complicated forms of these equations can be used to incorporate dispersion into the noise calculations.
Document ID
19950007540
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Joneckis, Lance G.
(Maryland Univ. College Park, MD, United States)
Shapiro, Jeffrey H.
(Maryland Univ. College Park, MD, United States)
Date Acquired
September 6, 2013
Publication Date
May 1, 1994
Publication Information
Publication: NASA. Goddard Space Flight Center, Third International Workshop on Squeezed States and Uncertainty Relations
Subject Category
Optics
Accession Number
95N13953
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.
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