Publication:
Shape-controlled Bose-Einstein condensation

Thumbnail Image

Departments

School / College / Institute

Program

KU Authors

Co-Authors

Publication Date

Language

Embargo Status

No

Journal Title

Journal ISSN

Volume Title

Alternative Title

Abstract

Size-invariant shape transformation is a geometric technique that allows for a clear separation between quantum size and shape effects by modifying the shape of the confinement domain without altering its size. The impact of shape on the behavior of confined systems is significantly different from that of size, making it an emerging area of research. The recent realization of flat-bottomed optical box traps has further contributed to the study of quantum gases in complex confinement geometries. Here, we propose shape-induced Bose-Einstein condensation at a fixed size, temperature, and density. We investigate the impact of pure quantum shape effects on a non-interacting Bose gas confined within nested square domains, where the shape parameter is defined and controlled by the rotation angle between the inner and outer squares. Our findings reveal that specific heat exhibits an additional low-temperature peak at certain shapes. This work opens new avenues for controlling quantum systems through geometric manipulation and provides insights into the thermodynamic properties of Bose gases under shape-induced quantum effects.

Source

Publisher

IOP Publishing Ltd

Subject

Physics

Citation

Has Part

Source

Physica Scripta

Book Series Title

Edition

DOI

10.1088/1402-4896/ad9fb2

item.page.datauri

Link

Rights

CC BY (Attribution)

Copyrights Note

Creative Commons license

Except where otherwised noted, this item's license is described as CC BY (Attribution)

Endorsement

Review

Supplemented By

Referenced By

0

Views

2

Downloads

View PlumX Details