Bose-Einstein condensates and the thin-shell limit in anisotropic bubble traps

Fuente: arXiv
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Main Authors: Biral, Elias J. P., Móller, Natália S., Pelster, Axel, Santos, F. Ednilson A. dos
Format: Preprint
Published: 2022
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author Biral, Elias J. P.
Móller, Natália S.
Pelster, Axel
Santos, F. Ednilson A. dos
author_facet Biral, Elias J. P.
Móller, Natália S.
Pelster, Axel
Santos, F. Ednilson A. dos
contents Within the many different models that appeared with the use of cold atoms to design BECs the bubble trap shaped potential has been of great interest. For the anisotropic bubble trap physics in the thin-shell limit the relationship between the physical parameters and the resulting manifold geometry is yet to be fully understood. In this paper, we work towards this goal showing how the parameters of the system must be manipulated in order to allow for a non-collapsing thin-shell limit. In such a limit, a dimensional compactification takes place thus leading to an effective 2D Hamiltonian which relates to up-to-date bubble trap experiments. At last, our Hamiltonian is pertubatively solved for some particular cases as applications of our theory.
format Preprint
id arxiv_https___arxiv_org_abs_2210_08074
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Bose-Einstein condensates and the thin-shell limit in anisotropic bubble traps
Biral, Elias J. P.
Móller, Natália S.
Pelster, Axel
Santos, F. Ednilson A. dos
Quantum Gases
Within the many different models that appeared with the use of cold atoms to design BECs the bubble trap shaped potential has been of great interest. For the anisotropic bubble trap physics in the thin-shell limit the relationship between the physical parameters and the resulting manifold geometry is yet to be fully understood. In this paper, we work towards this goal showing how the parameters of the system must be manipulated in order to allow for a non-collapsing thin-shell limit. In such a limit, a dimensional compactification takes place thus leading to an effective 2D Hamiltonian which relates to up-to-date bubble trap experiments. At last, our Hamiltonian is pertubatively solved for some particular cases as applications of our theory.
title Bose-Einstein condensates and the thin-shell limit in anisotropic bubble traps
topic Quantum Gases
url https://arxiv.org/abs/2210.08074