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10309

Superfluidity Nature of aRotating Bose-Einstein Condensation with Finite Size Effect

Article

Last updated: 03 Jan 2025

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Abstract

We report on a superfluid properties of a Bose- Einstein condensate in a rotating harmonic trap. We employ the semiclassical approximation, which is the density of state approach. Our approach provided the finite size effect. The superfluid fraction of bosons and its heat capacity at constant volume are investigated. The calculated results provide a good qualitative agreement with the measured experimental results for superfluid helium 4H. Moreover, furnish useful qualitatively theoretical results for a spectroscopic measurement of the superfluid fraction of an ultracold atomic gas [N. R. Cooper and Z. Hadzibabic, Phys. Rev. Lett. 104, 030401 (2010)]. Our results show that both The superfluid fraction of bosons and its heat capacity depend on the number of the atoms. This significant dependence should be considered when the it in situ widths are used in extracting measurable experimental quantities. Our approach can be extended to consider the rotating condensate in optical potential .

DOI

10.21608/ejphysics.2018.3823.1005

Keywords

Super fluid helium, Bose ensitien condensation, In situ size, Lambda_transation

Authors

First Name

Alyaa

Last Name

Mahmoud

MiddleName

Adel

Affiliation

Physics Department ,faculty of science ,Minia university

Email

alyaascience@gmail.com

City

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Orcid

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Volume

46

Article Issue

1 (In Progress)

Related Issue

3813

Issue Date

2018-11-01

Receive Date

2018-05-13

Publish Date

2018-11-01

Page Start

41

Page End

51

Print ISSN

1110-0214

Online ISSN

2537-0960

Link

https://ejphysics.journals.ekb.eg/article_10309.html

Detail API

https://ejphysics.journals.ekb.eg/service?article_code=10309

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5

Type

Original Article

Type Code

441

Publication Type

Journal

Publication Title

Egyptian Journal of Physics

Publication Link

https://ejphysics.journals.ekb.eg/

MainTitle

Superfluidity Nature of aRotating Bose-Einstein Condensation with Finite Size Effect

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Article

Created At

22 Jan 2023