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20232026
most citedThe Chiral Separation Effect from lattice QCD at the physical point

11 citations · 24 across the 11 of their papers we have counts for

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hep-lat2026

Testing strong isospin breaking effects in QCD thermodynamics

D. A. Clarke, B. B. Brandt

Most modern lattice QCD calculations take the masses of the light quarks to be degenerate, setting , a choice that, while not physical, increases computational efficiency…

hep-lat2026

Equation of state of dense magnetized QCD matter via a robust analytic continuation

S. Borsányi, B. B. Brandt, G. Endrődi +4

We compute the equation of state of dense and magnetized strongly interacting matter using lattice QCD at a non-zero value of the lattice spacing. Our simulations employ dy…

hep-lat2026

Spectral reconstruction techniques, their shortcomings and relevance to the electric conductivity coefficient

C. Andratschke, B. B. Brandt, E. Garnacho-Velasco +3

Spectral reconstruction is a well studied numerically ill-posed problem which arises due to the relation of the Euclidean correlator to the spectral function via an inhomogeneous F…

hep-lat2025

Dense and magnetized QCD from imaginary chemical potential

Szabolcs Borsányi, Bastian Brandt, Gergely Endrődi +4

In this work, we computed the equation of state of dense QCD in the presence of background magnetic fields using lattice QCD simulations at imaginary baryon chemical potential. Our…

hep-lat2025

Out-of-equilibrium Chiral Magnetic Effect via Kubo formulas

B. B. Brandt, G. Endrődi, E. Garnacho-Velasco +2

In this proceedings article, we present the first steps towards the determination of the out-of-equilibrium conductivity of the Chiral Magnetic Effect (CME) in the presence of stro…

hep-lat2024★ 2 cited

Localized Chiral Magnetic Effect in equilibrium QCD

B. B. Brandt, G. Endrődi, E. Garnacho-Velasco +2

We study the impact of a non-uniform magnetic background field on the Chiral Magnetic Effect (CME) in equilibrium QCD using lattice simulations with 2+1 flavors of dynamical stagge…