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Pulsed quadrature-phase squeezing of solitary waves in X2 parametric waveguides

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posted on 2024-07-11, 18:18 authored by M. J. Werner, Peter DrummondPeter Drummond
It is shown that coherent quantum simultons (simultaneous solitary waves at two different frequencies) can undergo quadrature-phase squeezing as they propagate through a dispersive x(2) waveguide. This requires a treatment of the coupled quantized fields including a quantized depleted pump field. A technique involving nonlinear stochastic parabolic partial differential equations using a nondiagonal coherent state representation in combination with an exact Wigner representation on a reduced phase space is outlined. We explicitly demonstrate that group-velocity matched x ( 2 ) waveguides which exhibit collinear propagation can produce quadrature-phase squeezed simultons. Quasi-phase-matched KTP waveguides, even with their large group-velocity mismatch between fundamental and second harmonic at 425 nm, can produce 3 dB squeezed bright pulses at 850 nm in the large phase-mismatch regime. This can be improved to more than 6 dB by using group-velocity matched waveguides.

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PDF (Accepted manuscript)

ISSN

1050-2947

Journal title

Physical Review A

Volume

56

Issue

2

Pagination

10 pp

Publisher

American Physical Society

Copyright statement

Copyright © 1997 The American Physical Society. The accepted manuscript is reproduced in accordance with the copyright policy of the publisher.

Language

eng

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