Ensemble averaging in low-dimensional holography is reinterpreted as averaging over topological boundary conditions in a fixed SymTFT slab, reproducing Poisson moments in the Marolf-Maxfield model and Zamolodchikov measure in the Narain case.
On the Phase Transition Towards Per- manent Quark Confinement
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Net-baryon cumulants follow mean-field critical scaling near the deconfinement point, with the critical region shrinking at higher baryon density and beyond-mean-field exponents estimated from the 3D Ising model.
Field theories with ℤ_N p-form symmetry generically admit a Coulomb phase where the infrared theory is Abelian p-form electrodynamics, illustrated via continuum and lattice examples.
A new parametrization detects Cartan fluxes in SU(3) lattice gauge theory after Maximal Abelian gauge fixing, claimed equivalent to standard methods for SU(2).
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From Baby Universes to Narain Moduli: Topological Boundary Averaging in SymTFTs
Ensemble averaging in low-dimensional holography is reinterpreted as averaging over topological boundary conditions in a fixed SymTFT slab, reproducing Poisson moments in the Marolf-Maxfield model and Zamolodchikov measure in the Narain case.
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Scaling properties of net-baryon number fluctuations at the deconfinement critical point
Net-baryon cumulants follow mean-field critical scaling near the deconfinement point, with the critical region shrinking at higher baryon density and beyond-mean-field exponents estimated from the 3D Ising model.
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Discrete $p$-Form Symmetry and Higher Coulomb Phases
Field theories with ℤ_N p-form symmetry generically admit a Coulomb phase where the infrared theory is Abelian p-form electrodynamics, illustrated via continuum and lattice examples.
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Cartan Fluxes in $SU(3)$ Lattice Gauge Theory
A new parametrization detects Cartan fluxes in SU(3) lattice gauge theory after Maximal Abelian gauge fixing, claimed equivalent to standard methods for SU(2).