English

Baryon electric charge correlation as a magnetometer of QCD

High Energy Physics - Lattice 2024-05-17 v2 High Energy Physics - Phenomenology Nuclear Experiment Nuclear Theory

Abstract

The correlation between net baryon number and electric charge, χ11BQ\chi_{11}^{\rm BQ}, can serve as a magnetometer of QCD. This is demonstrated by lattice QCD computations using the highly improved staggered quarks with physical pion mass of Mπ=135 M_\pi=135~MeV on Nτ=8N_\tau=8 and 12 lattices. We find that χ11BQ\chi_{11}^{\rm BQ} along the transition line starts to increase rapidly with magnetic field strength eB2Mπ2eB\gtrsim 2M_\pi^2 and by a factor 2 at eB8Mπ2eB\simeq 8M_\pi^2. Furthermore, the ratio of electric charge chemical potential to baryon chemical potential, μQ/μB\mu_{\rm Q}/\mu_{\rm B}, shows significant dependence on the magnetic field strength and varies from the ratio of electric charge to baryon number in the colliding nuclei in heavy ion collisions. These results can provide baselines for effective theory and model studies, and both χ11BQ\chi_{11}^{\rm BQ} and μQ/μB\mu_{\rm Q}/\mu_{\rm B} could be useful probes for the detection of magnetic fields in relativistic heavy ion collision experiments as compared with corresponding results from the hadron resonance gas model.

Keywords

Cite

@article{arxiv.2312.08860,
  title  = {Baryon electric charge correlation as a magnetometer of QCD},
  author = {Heng-Tong Ding and Jin-Biao Gu and Arpith Kumar and Sheng-Tai Li and Jun-Hong Liu},
  journal= {arXiv preprint arXiv:2312.08860},
  year   = {2024}
}

Comments

6 pages main text + 6 pages supplemental material, discussions added on the continuum estimate and extrapolation along with additional lattice QCD simulations on Nt=16 lattices, and the proxy of baryon electric charge correlation as well as the thermal fits to obtain the baryon and electric charge chemical potential