Thermostatistical analysis for short-range interaction Potentials
arXiv:2009.04572 · doi:10.1142/S0219887820501935
Abstract
In this paper, we study the thermodynamics of short-range central potentials, namely, the Lee-Wick potential, and the Plasma potential. In the first part of the paper we obtain the numerical solution for the orbits equation for these potentials. Posteriorly, we introduce the thermodynamics through the microcanonical and canonical ensembles formalism defined on the phase space of the system. We calculate the density of states associated with the Lee-Wick and the Plasma potentials. From density of states, we obtain the thermodynamical physical quantities like entropy and temperature as functions of the energy. We also use the Boltzmann-Gibbs formalism to obtain the partition functions, the mean energy and the thermal capacity for these short-range potentials.
25 pages, 14 figures
References in corpus (5)
- The Lee-Wick Standard Model
- Entropic Accelerating Universe
- Friedmann Equations from Entropic Force
- Klein-Gordon equation particles in exponential-type molecule potentials and its thermodynamic properties in D- dimensions
- Generalized second law of thermodynamics for FRW cosmology with logarithmic correction