A generalized definition of the isothermal compressibility in (2+1)-flavor QCD

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Main Authors: Clarke, D. A., Goswami, J., Karsch, F., Petreczky, P.
Format: Preprint
Published: 2025
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author Clarke, D. A.
Goswami, J.
Karsch, F.
Petreczky, P.
author_facet Clarke, D. A.
Goswami, J.
Karsch, F.
Petreczky, P.
contents We introduce a generalized definition of the isothermal compressibility ($κ_{T,σ_Q^2}$) calculable by keeping net conserved charge fluctuations rather than total number densities constant. We present lattice QCD results for this isothermal compressibility, expressed in terms of fluctuations of conserved charges that are related to baryon ($B$), electric charge ($Q$) and strangeness ($S$) quantum numbers. This generalized isothermal compressibility is compared with hadron resonance gas model calculations as well as with heavy-ion collision data obtained at RHIC and the LHC. We find $κ_{T,σ_Q^2}=13.8(1.3)$~fm$^3$/GeV at $T_{pc,0}=156.5(1.5)$~MeV and $\hatμ_B=0$. This finding is consistent with the rescaled result of the ALICE Collaboration, where we replaced the number of charged hadrons ($N_{\rm ch}$) by the total number of hadrons ($N_{\rm tot}$) at freeze-out. Normalizing this result with the QCD pressure ($P$) we find that the isothermal compressibility on the pseudo-critical line stays close to that of an {\it ideal gas}, {\it i.e.} $P κ_{T,σ_Q^2}\simeq 1$.
format Preprint
id arxiv_https___arxiv_org_abs_2506_22816
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A generalized definition of the isothermal compressibility in (2+1)-flavor QCD
Clarke, D. A.
Goswami, J.
Karsch, F.
Petreczky, P.
High Energy Physics - Lattice
High Energy Physics - Phenomenology
Nuclear Theory
We introduce a generalized definition of the isothermal compressibility ($κ_{T,σ_Q^2}$) calculable by keeping net conserved charge fluctuations rather than total number densities constant. We present lattice QCD results for this isothermal compressibility, expressed in terms of fluctuations of conserved charges that are related to baryon ($B$), electric charge ($Q$) and strangeness ($S$) quantum numbers. This generalized isothermal compressibility is compared with hadron resonance gas model calculations as well as with heavy-ion collision data obtained at RHIC and the LHC. We find $κ_{T,σ_Q^2}=13.8(1.3)$~fm$^3$/GeV at $T_{pc,0}=156.5(1.5)$~MeV and $\hatμ_B=0$. This finding is consistent with the rescaled result of the ALICE Collaboration, where we replaced the number of charged hadrons ($N_{\rm ch}$) by the total number of hadrons ($N_{\rm tot}$) at freeze-out. Normalizing this result with the QCD pressure ($P$) we find that the isothermal compressibility on the pseudo-critical line stays close to that of an {\it ideal gas}, {\it i.e.} $P κ_{T,σ_Q^2}\simeq 1$.
title A generalized definition of the isothermal compressibility in (2+1)-flavor QCD
topic High Energy Physics - Lattice
High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2506.22816