Ideal Fermi gas in the Dunkl formalism

Fuente: arXiv
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Main Authors: Zenkhri, Djamel Eddine, Benkrane, Abdelhakim
Format: Preprint
Published: 2025
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author Zenkhri, Djamel Eddine
Benkrane, Abdelhakim
author_facet Zenkhri, Djamel Eddine
Benkrane, Abdelhakim
contents This paper investigates the thermodynamic properties of an ideal Fermi gas within the framework of the Dunkl formalism, which incorporates deformation effects through reflection symmetric differential operators. The formalism is applied to reformulate the creation and annihilation operators, leading to modified expressions for the fundamental thermodynamic quantities while preserving the underlying Fermi Dirac statistics. We derived modified expressions for the main thermodynamic quantities. In both the non degenerate and degenerate limits, we examined the effects of the Dunkl parameter on the internal energy, Helmholtz free energy, entropy, and heat capacity. Furthermore, we analyzed how the Dunkl deformation influences the isothermal compressibility, the average velocity of particles, and the Pauli paramagnetism.
format Preprint
id arxiv_https___arxiv_org_abs_2508_11806
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Ideal Fermi gas in the Dunkl formalism
Zenkhri, Djamel Eddine
Benkrane, Abdelhakim
Quantum Gases
Mathematical Physics
This paper investigates the thermodynamic properties of an ideal Fermi gas within the framework of the Dunkl formalism, which incorporates deformation effects through reflection symmetric differential operators. The formalism is applied to reformulate the creation and annihilation operators, leading to modified expressions for the fundamental thermodynamic quantities while preserving the underlying Fermi Dirac statistics. We derived modified expressions for the main thermodynamic quantities. In both the non degenerate and degenerate limits, we examined the effects of the Dunkl parameter on the internal energy, Helmholtz free energy, entropy, and heat capacity. Furthermore, we analyzed how the Dunkl deformation influences the isothermal compressibility, the average velocity of particles, and the Pauli paramagnetism.
title Ideal Fermi gas in the Dunkl formalism
topic Quantum Gases
Mathematical Physics
url https://arxiv.org/abs/2508.11806