26 July 2026 to 1 August 2026
University of Maryland, College Park
US/Eastern timezone

Leading-order dynamical QED corrections to the thermodynamics of isospin-asymmetric QCD

30 Jul 2026, 16:50
20m
Thurgood Marshall (Adele H. Stamp Student Union)

Thurgood Marshall

Adele H. Stamp Student Union

3972 Campus Dr, College Park, MD 20742
Contributed talk QCD at nonzero temperature and density QCD at nonzero temperature and density

Speaker

Mr Gergely Marko (Eotvos Lorand University, Institute of Physics)

Description

At large isospin chemical potential $\mu_I$ and low temperature, QCD undergoes a second-order transition to a Bose-Einstein condensate of charged pions, whose order is encoded in the non-analytic $\mu_I$-dependence of the pressure and of the isospin density derived from it. Including dynamical photons is expected, on general grounds, to drive this transition first order. Since unequal quark charges render the QCD+QED action complex, we avoid the sign problem by expanding the pressure to $\mathcal{O}(e^2)$ around $e=0$, with the leading contribution governed by the second charge-derivative of the free energy density, $\partial^2 f/\partial e^2|_{e=0}$. We evaluate it directly on existing isospin-asymmetric pure-QCD ensembles as a spacetime convolution of the Feynman-gauge photon propagator with the vector current-current correlator at nonzero $\mu_I$ and pion source $\lambda$. The full correlator is computed using a point source and a newly proposed two-dimensional planar source. We report progress toward the first lattice determination of $\partial^2 f/\partial e^2|_{e=0}$ as a function of $\mu_I$, which captures, at leading order, the imprint of dynamical photons on the thermodynamics across the transition.

Authors

Gergely Endrodi Mr Gergely Marko (Eotvos Lorand University, Institute of Physics) Wei-Ping Huang (Eötvös Loránd University) Ádám Fischer (Eotvos Lorand University, Institute of Physics)

Presentation materials

There are no materials yet.