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Functional Wigner representation of quantum dynamics of Bose-Einstein condensate

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posted on 2024-07-26, 13:59 authored by Bogdan Opanchuk, Peter DrummondPeter Drummond
We develop a method of simulating the full quantum field dynamics of multi-mode multi-component Bose-Einstein condensates in a trap. We use the truncated Wigner representation to obtain a probabilistic theory that can be sampled. This method produces c-number stochastic equations which may be solved using conventional stochastic methods. The technique is valid for large mode occupation numbers. We give a detailed derivation of methods of functional Wigner representation appropriate for quantum fields. Our approach describes spatial evolution of spinor components and properly accounts for nonlinear losses. Such techniques are applicable to calculating the leading quantum corrections, including effects such as quantum squeezing, entanglement, EPR correlations, and interactions with engineered nonlinear reservoirs. By using a consistent expansion in the inverse density, we are able to explain an inconsistency in the nonlinear loss equations found by earlier authors.

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ISSN

0022-2488

Journal title

J. Math. Phys.

Volume

54

Issue

4

Article number

article no. 042107

Pagination

042107-

Publisher

American Institute of Physics

Copyright statement

Copyright © 2013 AIP Publishing LLC. the published version is reproduced with the permission of the publisher. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics.

Language

eng

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