Extends PINN-based holographic inverse problem solving to false vacuum and large hierarchy regimes, claiming accurate scalar potential reconstruction from thermodynamic data despite numerical stiffness.
Holographic Collisions in Non-conformal Theories
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abstract
We numerically simulate gravitational shock wave collisions in a holographic model dual to a non-conformal four-dimensional gauge theory. We find two novel effects associated to the non-zero bulk viscosity of the resulting plasma. First, the hydrodynamization time increases. Second, if the bulk viscosity is large enough then the plasma becomes well described by hydrodynamics before the energy density and the average pressure begin to obey the equilibrium equation of state. We discuss implications for the quark-gluon plasma created in heavy ion collision experiments.
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hep-th 1years
2026 1verdicts
UNVERDICTED 1representative citing papers
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Gravitational Duals from Equations of State II: Large Hierarchies and False Vacua
Extends PINN-based holographic inverse problem solving to false vacuum and large hierarchy regimes, claiming accurate scalar potential reconstruction from thermodynamic data despite numerical stiffness.