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We present a new equation of state for QCD in which the temperature and the three chemical potentials for baryon number , electric charge , and strangeness can be varied independently. This result is based on a generalization of the expansion scheme, thanks to which the diagonal extrapolation was pushed up to a baryo-chemical potential for the first time. This considerably extended the coverage of the Taylor expansion, limited to . As a consequence, we are able to offer a substantially larger coverage of the four-dimensional QCD phase diagram as well, compared to previously available Taylor expansion results. Our findings are based on new continuum estimated lattice data on the full set of second- and fourth-order fluctuations.more » « lessFree, publicly-accessible full text available September 1, 2026
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Borsányi, Szabolcs; Guenther, Jana N.; Kara, Ruben; Fodor, Zoltán; Parotto, Paolo; Pásztor, Attila; Ratti, Claudia; Szabó, Kálmán (, Physical Review D)
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Bellwied, Rene; Ratti, Claudia; Borsányi, Szabolcs; Parotto, Paolo; Fodor, Zoltán; Guenther, Jana N.; Katz, Sándor D.; Pásztor, Attila; Pesznyák, Dávid; Szabó, Kálmán K. (, Physical Review D)
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Fodor, Zoltán; Giordano, Matteo; Günther, Jana N.; Kapás, Kornél; Katz, Sándor D.; Pásztor, Attila; Portillo, Israel; Ratti, Claudia; Sexty, Dénes; Szabó, Kálman K. (, Nuclear Physics A)
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Pásztor, Attila; Alba, Paolo; Bellwied, Rene; Borsányi, Szabolcs; Fodor, Zoltán; Günther, Jana N.; Katz, Sándor; Ratti, Claudia; Mantovani Sarti, Valentina; Noronha-Hostler, Jacquelyn; et al (, EPJ Web of Conferences)
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