DOE OSTI Β· 3363007
Locating the QCD critical point through contours of constant entropy density
Abstract
We propose a new method to investigate the existence and location of the conjectured high-temperature critical point of strongly interacting matter via contours of constant entropy density. By approximating these lines as a power series in the baryon chemical potential π π΅ , one can extrapolate them from first-principle results at zero net-baryon density, and use them to locate the quantum chromodynamics (QCD) critical point, including the associated first-order and spinodal lines. As a proof of principle, we employ currently available continuum-extrapolated lattice data from the Wuppertal-Budapest collaboration to find a critical point at a temperature and a baryon chemical potential of π π = 114.3 Β± 6.9 MeV and π π΅,π = 602.1 Β± 62.1 MeV, respectively, at expansion order πͺβ‘(π$^{2}_{π΅}$). We advocate for a more precise determination of the required expansion coefficients via lattice QCD simulations as a means of pinpointing the location of the critical endpoint in the phase diagram of strongly interacting matter.
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Shah, Hitansh [University of Houston, TX (United States)] (ORCID:0009000818703157), Hippert, Mauricio [Universidade do Estado do Rio de Janeiro (Brazil); Centro Brasileiro de Pesquisas FΓsicas, Rio de Janeiro (Brazil)] (ORCID:0000000158023908), Noronha, Jorge [University of Illinois at Urbana-Champaign, IL (United States)] (ORCID:0000000298170272), Ratti, Claudia [University of Houston, TX (United States)] (ORCID:000000028335567X), Vovchenko, Volodymyr [University of Houston, TX (United States)] (ORCID:0000000221894766). 2026-01-12. Locating the QCD critical point through contours of constant entropy density. https://doi.org/10.1103/cbwj-4jfl
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