A dynamical Einstein-Born-Infeld-dilaton model and holographic quarkonium melting in a magnetic field
Abstract
We generalize the potential reconstruction method to set up a dynamical Einstein-Born-Infeld-dilaton model, which we then use to study holographic quarkonium melting in an external magnetic field. The non-linear nature of the model allows to couple the magnetic field to the quarkonium inner structure without having to introduce back-reacting charged flavour degrees of freedom. The magnetic field dependent melting temperature is computed from the spectral functions and suggests a switch from inverse magnetic to magnetic catalysis when the magnetic field increases. We also discuss the differences due to the anisotropy brought in by the external field.
Keywords
Cite
@article{arxiv.2408.14813,
title = {A dynamical Einstein-Born-Infeld-dilaton model and holographic quarkonium melting in a magnetic field},
author = {Siddhi Swarupa Jena and Jyotirmoy Barman and Bruno Toniato and David Dudal and Subhash Mahapatra},
journal= {arXiv preprint arXiv:2408.14813},
year = {2024}
}
Comments
34 pages, 17 figures, a minor change in the abstract, the earlier version had an error in the computation of the melting temperature which is corrected now, references added, published version