中文

Magnetization and Magnetic Field-Induced Correction: Implications for QGP Thermal Photon Production in Magnetohydrodynamic

高能物理 - 唯象学 2026-08-13 v1 核理论

摘要

We investigate thermal photon emission from magnetized quark-gluon plasma (QGP) within (1+1)-dimensional relativistic magnetohydrodynamics (MHD), systematically incorporating magnetic susceptibility χm\chi_m---encompassing both constant and lattice-QCD-derived temperature-dependent χm(T)\chi_m(T) parametrizations---and weak-field quantum corrections to quark distribution functions fEMf_{\rm EM}. Employing the Pu-Bjorken MHD framework, we calculate photon production rates from Compton scattering, qqˉq\bar{q} annihilation, bremsstrahlung, and annihilation with rescattering, and integrate these over the QGP spacetime evolution to obtain transverse momentum (pTp_T) spectra. Our results demonstrate that photon yields are predominantly governed by the initial magnetic field strength and its temporal decay profile, with χm\chi_m exerting negligible influence in the explored parameter space. In contrast, the weak-field correction fEMf_{\rm EM} induces a distinct enhancement in thermal photon production at intermediate pTp_T. This work establishes a rigorous theoretical framework for quantifying electromagnetic observables in magnetized QGP and provides the foundation for future dissipative MHD studies incorporating spin-magnetization dynamics.

引用

@article{arxiv.2608.13364,
  title  = {Magnetization and Magnetic Field-Induced Correction: Implications for QGP Thermal Photon Production in Magnetohydrodynamic},
  author = {Jing Jing and Duan She and Ze-Fang Jiang},
  journal= {arXiv preprint arXiv:2608.13364},
  year   = {2026}
}

备注

17 pages, 14 figures. This is the accepted version of the article published in Phys. Rev. D