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- W4311343516 abstract "Locating the critical endpoint of QCD and the region of a first-order phase transition at finite baryon chemical potential is an active research area for QCD matter. We provide a gravitational dual description of QCD matter at finite baryon chemical potential and finite temperature using the non-perturbative approach from gauge/gravity duality. After fixing all model parameters using state-of-the-art lattice QCD data at zero chemical potential, the predicted equations of state and QCD trace anomaly relation are in quantitative agreement with the latest lattice results. We then give the exact location of the critical endpoint as well as the first-order transition line, which is within the coverage of many upcoming experimental measurements. Moreover, using the data from our model at finite baryon chemical potential, we calculate the spectrum of the stochastic gravitational wave background associated with the first-order QCD transition in the early universe, which could be observable via pulsar timing in the future." @default.
- W4311343516 created "2022-12-25" @default.
- W4311343516 creator A5007494681 @default.
- W4311343516 creator A5021656770 @default.
- W4311343516 creator A5054821521 @default.
- W4311343516 creator A5064984266 @default.
- W4311343516 date "2022-12-13" @default.
- W4311343516 modified "2023-10-16" @default.
- W4311343516 title "Probing QCD critical point and induced gravitational wave by black hole physics" @default.
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- W4311343516 doi "https://doi.org/10.1103/physrevd.106.l121902" @default.
- W4311343516 hasPublicationYear "2022" @default.
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