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Related papers: Hagedorn States and Thermalization

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In recent years, Hagedorn states have been used to explain the equilibrium and transport properties of a hadron gas close to the QCD critical temperature. These massive resonances are shown to lower $\eta/s$ to near the AdS/CFT limit close…

Nuclear Theory · Physics 2011-05-11 Carsten Greiner , Jacquelyn Noronha-Hostler , Jorge Noronha

Quick chemical equilibration times of hadrons within a hadron gas are explained dynamically using Hagedorn states, which drive particles into equilibrium close to the critical temperature. Within this scheme master equations are employed…

Nuclear Theory · Physics 2014-10-29 J. Noronha-Hostler , Carsten Greiner , Igor Shovkovy

Hagedorn states (HS) are a tool to model the hadronization process which occurs in the phase transition region between the quark gluon plasma (QGP) and the hadron resonance gas (HRG). These states are believed to appear near the Hagedorn…

High Energy Physics - Phenomenology · Physics 2016-02-17 M. Beitel , K. Gallmeister , C. Greiner

Hagedorn states (HS) are a tool to model the hadronization process which occurs in the phase transition phase between the quark gluon plasma (QGP) and the hadron resonance gas (HRG). Their abundance is believed to appear near the Hagedorn…

High Energy Physics - Phenomenology · Physics 2015-06-22 M. Beitel , K. Gallmeister , C. Greiner

Quick chemical equilibration times of hadrons (specifically, $p\bar{p}$, $K\bar{K}$, $\Lambda\bar{\Lambda}$, and $\Omega\bar{\Omega}$ pairs) within a hadron gas are explained dynamically using Hagedorn states, which drive particles into…

Nuclear Theory · Physics 2014-10-29 J. Noronha-Hostler , M. Beitel , C. Greiner , I. Shovkovy

Hagedorn states are the key to understand how all hadrons observed in high energy heavy ion collisions seem to reach thermal equilibrium so quickly. An assembly of Hagedorn states is formed in elementary hadronic or heavy ion collisions at…

High Energy Physics - Phenomenology · Physics 2016-09-07 M. Beitel , C. Greiner , H. Stoecker

We show how the measured particle ratios at RHIC can be used to provide non-trivial information about the critical temperature of the QCD phase transition. This is obtained by including the effects of highly massive Hagedorn resonances on…

Nuclear Theory · Physics 2014-11-20 J. Noronha-Hostler , J. Noronha , C. Greiner

A scenario of heavy resonances, called massive Hagedorn states, is proposed which exhibits a fast ($t\approx 1$ fm/c) chemical equilibration of (strange) baryons and anti-baryons at the QCD critical temperature $T_c$. For relativistic heavy…

High Energy Physics - Phenomenology · Physics 2007-05-23 C. Greiner , P. Koch-Steinheimer , F. M. Liu , I. A. Shovkovy , H. Stoecker

Hagedorn states are characterized by being very massive hadron-like resonances and by not being limited to quantum numbers of known hadrons. To generate such a zoo of different Hagedorn states, a covariantly formulated bootstrap equation is…

High Energy Physics - Phenomenology · Physics 2014-10-15 M. Beitel , K. Gallmeister , C. Greiner

One important question in relativistic heavy ion collisions is if hadrons, specifically anti-hyperons, are in equilibrium before thermal freezeout because strangeness enhancement has long been pointed to as a signature for Quark Gluon…

Nuclear Theory · Physics 2007-05-23 J. Noronha-Hostler , C. Greiner , I. A. Shovkovy

We show how the measured particle ratios can be used to provide non-trivial information about the critical temperature of the QCD phase transition. This is obtained by including the effects of highly massive Hagedorn resonances on…

Nuclear Theory · Physics 2014-11-20 J. Noronha-Hostler , H. Ahmad , J. Noronha , C. Greiner

We discuss how the inclusion of Hagedorn states near $T_c$ leads to short chemical equilibration times of proton anti-proton pairs, $K\bar{K}$ pairs, and $\Lambda\bar{\Lambda}$ pairs, which indicates that hadrons do not need to be "born"…

Nuclear Theory · Physics 2009-11-18 J. Noronha-Hostler , J. Noronha , H. Ahmad , I. Shovkovy , C. Greiner

Recent measurements of the proton to pion ratio at $\sqrt{s}_{NN}=2.7$ TeV by the ALICE collaboration at the LHC have found it to be lower than predictions from thermal fits. In this paper we investigate the role that the extended mass…

Nuclear Theory · Physics 2014-05-29 Jacquelyn Noronha-Hostler , Carsten Greiner

In this work, we have studied the isothermal compressibility ($\kappa_T$) as a function of temperature, baryon chemical potential and centre-of-mass energy ($\sqrt{s_{NN}}$) using hadron resonance gas (HRG) and excluded-volume hadron…

High Energy Physics - Phenomenology · Physics 2019-08-07 Arvind Khuntia , Swatantra Kumar Tiwari , Pramod Sharma , Raghunath Sahoo , Tapan Kumar Nayak

We bring up the fact that the bulk thermal properties of the hadron gas, as measured on the lattice, preclude a very fast rising of the number of resonance states in the QCD spectrum, as assumed by the Hagedorn hypothesis, unless a…

Nuclear Theory · Physics 2016-11-01 Wojciech Broniowski

The Monte Carlo results in lattice QCD for the pressure and energy density at small temperature $T < 155$ MeV and zero baryonic chemical potential are analyzed within the hadron resonance gas model. Two extensions of the ideal hadron…

Nuclear Theory · Physics 2015-02-20 V. Vovchenko , D. V. Anchishkin , M. I. Gorenstein

A microcanonical treatment of Hagedorn systems, i.e. finite mass hadronic resonances with an exponential mass spectrum controlled by the Hagedorn temperature $T_H$, is performed. We show that, in the absence of any restrictions, a Hagedorn…

High Energy Physics - Phenomenology · Physics 2007-05-23 K. A. Bugaev , J. B. Elliott , L. G. Moretto , L. Phair

We examine the stability of hadron resonance gas models by extending them to take care of undiscovered resonances through the Hagedorn formula. We find that the influence of unknown resonances on thermodynamics is large but bounded. Hadron…

High Energy Physics - Phenomenology · Physics 2010-04-29 S. Chatterjee , R. M. Godbole , Sourendu Gupta

The Hagedorn temperature, T_H is determined from the number of hadronic resonances including all mesons and baryons. This leads to a stable result T_H = 174 MeV consistent with the critical and the chemical freeze-out temperatures at zero…

High Energy Physics - Phenomenology · Physics 2015-05-27 J. Cleymans , D. Worku

We present, using the statistical model, a new analysis of hadron production in central collisions of heavy nuclei. This study is motivated by the availability of final measurements both for the SPS (beam energies 20-160 AGeV) and for the…

Nuclear Theory · Physics 2014-11-18 A. Andronic , P. Braun-Munzinger , J. Stachel
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