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The Roberge-Weiss endpoint in $(2+1)$-flavor QCD with background magnetic fields
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abstract
In this work we discuss our preliminary results regarding the so-called Roberge-Weiss (RW) transition, which is found for imaginary values of the baryon chemical potential, in the presence of a background magnetic field. We perform lattice QCD simulations on $N_t = 6, 8$ lattices with $2+1$ flavors of stout-staggered fermions at physical quark masses and the tree-level Symanzik improved gauge action. We determine the location the RW endpoint at finite magnetic fields and we study the order of the transition.
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Dense and magnetized QCD from imaginary chemical potential
First 2+1+1 flavor lattice QCD results for the leading-order dense QCD equation of state in a magnetic field, along the strangeness-neutral, isospin-asymmetric trajectory, suggesting strong magnetic effects near the c...
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