Finite size correction to the thermo-magnetic properties of charged Bose gas
A. H. Abbas, W. M. Seif, Th. elsherbini, Ahmed S. Hassan

TL;DR
This paper investigates how finite size effects influence the thermo-magnetic properties of charged Bose gases confined in quasi-two-dimensional potentials, using a modified semiclassical approach to improve the accuracy of the density of states.
Contribution
It introduces a finite size correction method in a semiclassical framework to better understand the thermo-magnetic behavior of charged Bose gases.
Findings
Charged Bose gases exhibit diamagnetic behavior.
Temperature-dependent magnetization is observed.
Condensation occurs at a critical temperature influenced by magnetic field.
Abstract
We consider the finite size effect on thermo-magnetic properties of charged Bose gases confined in a quasi two-dimentsional potential. A modified semiclassical approach is used, taking into account the finite size correction to guarantee an accurate density of states. The charged spinless Bose gas shows diamagnetic behavior. Temperature dependent magnetization is indicated for the investigated system that condense at a resistive critical temperature in accordance with the applied magnetic field.
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Taxonomy
TopicsCold Atom Physics and Bose-Einstein Condensates · Advanced Thermodynamics and Statistical Mechanics · Quantum, superfluid, helium dynamics
