Thermostatistical analysis and negative heat capacities of Yukawa and Lee-Wick potentials in noncommutative phase spaces
Maria G. Sousa, Everton M. C. Abreu, Albert C. R. Mendes, M. J. Neves

TL;DR
This paper explores how noncommutative phase-space deformations influence the thermodynamics of Yukawa and Lee-Wick potentials, revealing modifications like negative heat capacities that depend on the noncommutative parameter.
Contribution
It provides a semiclassical analysis of thermodynamic properties in noncommutative phase spaces for specific interaction models, highlighting the impact of phase-space geometry.
Findings
Noncommutative parameter $ heta$ modifies thermodynamic quantities.
Negative heat capacity regions can appear due to phase-space deformation.
Results are valid under weak noncommutativity and perturbative assumptions.
Abstract
In recent years, physical models based on noncommutative algebras have attracted considerable interest, as they provide a natural framework to incorporate a fundamental scale, often associated with semiclassical aspects of quantum gravity. Noncommutative geometry modifies the underlying phase-space structure, potentially leading to new insights into unresolved problems in theoretical physics. In this work, we adopt a semiclassical approach to perform a thermostatistical analysis of well-established interaction models, namely the Yukawa and Lee--Wick potentials, within a noncommutative phase space. We investigate how phase-space deformations affect the density of states, partition function, mean energy, and heat capacity, considering both microcanonical and canonical ensembles within the Boltzmann--Gibbs framework. Our results show that the introduction of the noncommutative parameter…
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