Optimal control of a Bose-Eintein Condensate in an optical lattice: The non-linear and two-dimensional cases

Fuente: arXiv
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Main Authors: Dionis, E., Peaudecerf, B., Guérin, S., Guéry-Odelin, D., Sugny, D.
Format: Preprint
Published: 2024
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author Dionis, E.
Peaudecerf, B.
Guérin, S.
Guéry-Odelin, D.
Sugny, D.
author_facet Dionis, E.
Peaudecerf, B.
Guérin, S.
Guéry-Odelin, D.
Sugny, D.
contents We numerically study the optimal control of an atomic Bose-Einstein condensate in an optical lattice. We present two generalizations of the gradient-based algorithm, GRAPE, in the non-linear case and for a two-dimensional lattice. We show how to construct such algorithms from Pontryagin's maximum principle. A wide variety of target states can be achieved with high precision by varying only the laser phases setting the lattice position. We discuss the physical relevance of the different results and the future directions of this work.
format Preprint
id arxiv_https___arxiv_org_abs_2412_05170
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Optimal control of a Bose-Eintein Condensate in an optical lattice: The non-linear and two-dimensional cases
Dionis, E.
Peaudecerf, B.
Guérin, S.
Guéry-Odelin, D.
Sugny, D.
Quantum Physics
We numerically study the optimal control of an atomic Bose-Einstein condensate in an optical lattice. We present two generalizations of the gradient-based algorithm, GRAPE, in the non-linear case and for a two-dimensional lattice. We show how to construct such algorithms from Pontryagin's maximum principle. A wide variety of target states can be achieved with high precision by varying only the laser phases setting the lattice position. We discuss the physical relevance of the different results and the future directions of this work.
title Optimal control of a Bose-Eintein Condensate in an optical lattice: The non-linear and two-dimensional cases
topic Quantum Physics
url https://arxiv.org/abs/2412.05170