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Generation of photon-number-entangled soliton pairs through interactions
Journal article   Peer reviewed

Generation of photon-number-entangled soliton pairs through interactions

Ray-Kuang Lee, Yinchieh Lai and Boris A. Malomed
Physical Review A - Atomic, Molecular, and Optical Physics, Vol.71(1), 013816
01/01/2005

Abstract

Two simple schemes for generating macroscopic (many-photon) continuous-variable entangled states by means of continuous interactions (rather than collisions) between solitons in optical fibers are proposed. First, quantum fluctuations around two time-separated single-component temporal solitons are considered. Almost perfect correlation between the photon-number fluctuations can be achieved after passing a certain distance, with a suitable initial separation between the solitons. The photon-number correlation can also be achieved in a pair of vectorial solitons with two polarization components. In the latter case, the photon-number-entangled pulses can be easily separated by a polarization beam splitter. These results offer possibilities to produce entangled sources for quantum communication and computation. ©2005 The American Physical Society.

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