Partial pressure and susceptibilities of charmed sector in the van der Waals hadron resonance gas model

Fuente: arXiv
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Auteurs principaux: Goswami, Kangkan, Pradhan, Kshitish Kumar, Sahu, Dushmanta, Sahoo, Raghunath
Format: Preprint
Publié: 2025
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author Goswami, Kangkan
Pradhan, Kshitish Kumar
Sahu, Dushmanta
Sahoo, Raghunath
author_facet Goswami, Kangkan
Pradhan, Kshitish Kumar
Sahu, Dushmanta
Sahoo, Raghunath
contents We investigate the general susceptibilities in the charm sector by using the van der Waals hadron resonance gas model (VDWHRG). We argue that the ideal hadron resonance gas (HRG), which assumes no interactions between hadrons, and the excluded volume hadron resonance gas (EVHRG), which includes only repulsive interactions, fail to explain the lQCD data at very high temperatures. In contrast, the VDWHRG model, incorporating both attractive and repulsive interactions, extends the degree of agreement with lQCD up to nearly 180 MeV. We estimate the partial pressure in the charm sector and study charm susceptibility ratios in a baryon-rich environment, which is tricky for lattice quantum chromodynamics (lQCD) due to the fermion sign problem. Our study further solidifies the notion that the hadrons shouldn't be treated as non-interacting particles, especially when studying higher order fluctuations, but rather one should consider both attractive and repulsive interactions between the hadrons.
format Preprint
id arxiv_https___arxiv_org_abs_2508_07716
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Partial pressure and susceptibilities of charmed sector in the van der Waals hadron resonance gas model
Goswami, Kangkan
Pradhan, Kshitish Kumar
Sahu, Dushmanta
Sahoo, Raghunath
High Energy Physics - Phenomenology
High Energy Physics - Experiment
High Energy Physics - Lattice
Nuclear Experiment
Nuclear Theory
We investigate the general susceptibilities in the charm sector by using the van der Waals hadron resonance gas model (VDWHRG). We argue that the ideal hadron resonance gas (HRG), which assumes no interactions between hadrons, and the excluded volume hadron resonance gas (EVHRG), which includes only repulsive interactions, fail to explain the lQCD data at very high temperatures. In contrast, the VDWHRG model, incorporating both attractive and repulsive interactions, extends the degree of agreement with lQCD up to nearly 180 MeV. We estimate the partial pressure in the charm sector and study charm susceptibility ratios in a baryon-rich environment, which is tricky for lattice quantum chromodynamics (lQCD) due to the fermion sign problem. Our study further solidifies the notion that the hadrons shouldn't be treated as non-interacting particles, especially when studying higher order fluctuations, but rather one should consider both attractive and repulsive interactions between the hadrons.
title Partial pressure and susceptibilities of charmed sector in the van der Waals hadron resonance gas model
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
High Energy Physics - Lattice
Nuclear Experiment
Nuclear Theory
url https://arxiv.org/abs/2508.07716