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Specific Heat of Matter Formed in Relativistic Nuclear Collisions

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arxiv 1601.05631 v2 pith:J7RQRJQY submitted 2016-01-21 nucl-ex hep-phnucl-th

classification nucl-exhep-phnucl-th
keywords distributionsenergyfreeze-outheatmodelcollidercollisionsdata
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We report the excitation energy dependence of specific heat (\cv) of hadronic matter at freeze-out in Au+Au and Cu+Cu collisions at the Relativistic Heavy Ion Collider energies by analyzing the published data on event-by-event mean transverse momentum (\meanpt) distributions. The \meanpt~distributions in finite \pt~ranges are converted to distributions of effective temperatures, and dynamical fluctuations in temperature are extracted by subtracting widths of the corresponding mixed event distributions. The heat capacity per particle at the kinetic freeze-out surface is presented as a function of collision energy, which shows a sharp rise in \cv~below \sNN~=~62.4~GeV. We employ the Hadron Resonance Gas (HRG) model to estimate \cv~at the chemical and kinetic freeze-out surfaces. The experimental results are compared to the HRG and other theoretical model calculations. HRG results show good agreement with data. Model predictions for \cv~at the Large Hadron Collider energy are presented.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Interaction fingerprints in temperature-fluctuation cumulants from the QCD crossover to nuclear liquid-gas criticality

    nucl-th 2026-07 conditional novelty 6.0 of 10

    Temperature-fluctuation cumulants in ideal, excluded-volume, and van der Waals hadron resonance gas track lattice QCD through the crossover, separate along freeze-out at low energy, and trace the nuclear liquid-gas Wi...

  2. System size and energy dependence of the mean transverse momentum fluctuations at the LHC

    nucl-ex 2024-11 conditional novelty 6.0 of 10

    ALICE reports the system-size and energy dependence of mean transverse momentum fluctuations at the LHC, including a new spherocity-dependent measurement in proton-proton collisions.

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