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Endrodi, Critical point in the QCD phase diagram for extremely strong background magnetic fields, JHEP07, 173, arXiv:1504.08280 [hep-lat]

2 Pith papers cite this work. Polarity classification is still indexing.

2 Pith papers citing it
abstract

Lattice simulations have demonstrated that a background (electro)magnetic field reduces the chiral/deconfinement transition temperature of quantum chromodynamics for eB < 1 GeV^2. On the level of observables, this reduction manifests itself in an enhancement of the Polyakov loop and in a suppression of the light quark condensates (inverse magnetic catalysis) in the transition region. In this paper, we report on lattice simulations of 1+1+1-flavor QCD at an unprecedentedly high value of the magnetic field eB = 3.25 GeV^2. Based on the behavior of various observables, it is shown that even at this extremely strong field, inverse magnetic catalysis prevails and the transition, albeit becoming sharper, remains an analytic crossover. In addition, we develop an algorithm to directly simulate the asymptotically strong magnetic field limit of QCD. We find strong evidence for a first-order deconfinement phase transition in this limiting theory, implying the presence of a critical point in the QCD phase diagram. Based on the available lattice data, we estimate the location of the critical point.

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hep-ph 2

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2026 2

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UNVERDICTED 2

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background 1

representative citing papers

Delineating neutral and charged mesons in magnetic fields

hep-ph · 2026-04-17 · unverdicted · novelty 4.0

Neutral mesons conserve continuous transverse momenta in magnetic fields while charged mesons exhibit quantized transverse dynamics, with high-spin charged mesons stabilized by cancellation of internal zero-point energy against orbital Zeeman energy.

Spectral function for pions in magnetic field

hep-ph · 2026-01-30 · unverdicted · novelty 3.0

Pion spectral functions in magnetic fields develop multi-peak structures for neutral pions from Landau levels and Landau cuts for charged pions, with decay widths narrowing at higher temperatures indicating increased stability.

citing papers explorer

Showing 2 of 2 citing papers.

  • Delineating neutral and charged mesons in magnetic fields hep-ph · 2026-04-17 · unverdicted · none · ref 61

    Neutral mesons conserve continuous transverse momenta in magnetic fields while charged mesons exhibit quantized transverse dynamics, with high-spin charged mesons stabilized by cancellation of internal zero-point energy against orbital Zeeman energy.

  • Spectral function for pions in magnetic field hep-ph · 2026-01-30 · unverdicted · none · ref 26 · internal anchor

    Pion spectral functions in magnetic fields develop multi-peak structures for neutral pions from Landau levels and Landau cuts for charged pions, with decay widths narrowing at higher temperatures indicating increased stability.