The ⋋ Structure of the Heat Capacity of an Ideal Gas in the Critical Region of Bose–Einstein Condensation for Various Mesoscopic Traps
- Authors: Tarasov S.V.1
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Affiliations:
- Institute of Applied Physics of the Russian Academy of Sciences
- Issue: Vol 59, No 6 (2016)
- Pages: 501-514
- Section: Article
- URL: https://journal-vniispk.ru/0033-8443/article/view/243709
- DOI: https://doi.org/10.1007/s11141-016-9718-2
- ID: 243709
Cite item
Abstract
The features of the ⋋ structure of the heat capacity of an ideal gas of Bose atoms, which is confined in arbitrarily shaped and sized mesoscopic traps, are considered on the basis of a general exact description of the Bose–Einstein condensation. The main attention is paid to the boundarycondition role in the critical region, in which the heat capacity is described by a self-similar function that is sensitive to perturbations of the confining potential and the boundary-condition variation. Various traps, which allow one to experimentally study the influence of the boundary conditions on the shape of the ⋋ structure of the heat capacity and observe variations in other thermodynamic parameters due to the corresponding rearrangement of the self-similar structure of the critical region, are considered.
About the authors
S. V. Tarasov
Institute of Applied Physics of the Russian Academy of Sciences
Author for correspondence.
Email: serge.tar@gmail.com
Russian Federation, Nizhny Novgorod
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