Electromagnetic responses of a non-extensive quark-gluon plasma
Abstract
Based on the non-extensive statistical mechanics and the gluon polarization tensor obtained from kinetic theory, we derive the longitudinal and transverse gluon self-energies for the quark-gluon plasma. The electric permittivity and the magnetic permeability are evaluated from the gluon self-energies through which the real part of the square of the refraction index and the Depine-Lakhtakia index are investigated. The real part of displays a frequency pole , which is just the position of the frequency inflexion of the imaginary part of . The non-extensive parameter significantly affects the real and imaginary parts of in the space-like region , while the frequency pole remains unchanged as increases. The magnetic permeability, and the Depine-Lakhtakia index diverge at frequency . As increases, the pole frequency shifts to large frequency region. The Depine-Lakhtakia index becomes negative in a quite large frequency region . When increases, the frequency range for becomes wider. Nevertheless, there are no propagating modes for the negative refraction. In addition, as momentum increases, the electric permittivity, the magnetic permeability, and are sensitive to the change of , which indicates the importance of the spatial dispersion in the electromagnetic responses of the QGP.
Keywords
Cite
@article{arxiv.2408.16528,
title = {Electromagnetic responses of a non-extensive quark-gluon plasma},
author = {Bing-feng Jiang and Jun Chen and De-fu Hou},
journal= {arXiv preprint arXiv:2408.16528},
year = {2025}
}
Comments
15pages,8 figures, discussions and appendixes added, published in Phys.Rev.D