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Holographic spin alignment of $J/\psi$ meson in magnetized plasma

High Energy Physics - Phenomenology 2024-07-30 v2 High Energy Physics - Theory

Abstract

We study the mass spectra and spin alignment of vector meson J/ψJ/\psi in a thermal magnetized background using a generalized theoretical framework based on gauge/gravity duality. Utilizing a soft wall model for the QGP background and a massive vector field for the J/ψJ/\psi meson, we delve into the meson's spectral function and spin parameters (λθ,λφ,λθφ)(\lambda_{\theta},\, \lambda_\varphi,\,\lambda_{\theta\varphi}) for different cases, assessing their response to variations in magnetic field strength, momentum, and temperature. We initially examine scenarios where a meson's momentum aligns parallel to the magnetic field in helicity frame. Our results reveal a magnetic field-induced positive λθH\lambda_\theta^\text{H} for low meson momentum, transitioning to negative with increased momentum. As a comparison, we also study the case of momentum perpendicular to the magnetic field and find the direction of magnetic field does not affect the qualitative behavior for the eBeB-dependence of λθH\lambda_\theta^\text{H}. Moreover, we apply our model to real heavy-ion collisions for three different spin quantization directions. Further comparisons with experimental data show qualitative agreement for spin parameters λθ\lambda_{\theta} and λφ\lambda_\varphi in the helicity and Collins-Soper frames.

Keywords

Cite

@article{arxiv.2403.07468,
  title  = {Holographic spin alignment of $J/\psi$ meson in magnetized plasma},
  author = {Yan-Qing Zhao and Xin-Li Sheng and Si-Wen Li and Defu Hou},
  journal= {arXiv preprint arXiv:2403.07468},
  year   = {2024}
}

Comments

27 pages, 8 figures