Graph explorer

Holographic Magnetic Star

A warm fermionic AdS star under a homogeneous magnetic field is explored. We obtain the relativistic Landau levels by using Dirac equation and use the Tolman-Oppenheimer-Volkoff (TOV) equation to study the physical profiles of the star. Bulk properties such as sound speed, adiabatic index, and entropy density within the star are calculated analytically and numerically. Bulk temperature increases the mass limit of the AdS star but external magnetic field has the opposite effect. The results are partially interpreted in terms of the pre-thermalization process of the gauge matter at the AdS boundary after the mass injection. The entropy density is found to demonstrate similar temperature dependence as the magnetic black brane in the AdS in certain limits regardless of the different nature of the bulk and Hawking temperatures. Total entropy of the AdS star is also found to be an increasing function of the bulk temperature and a decreasing function of the magnetic field, similar behaviour to the mass limit. Since both total entropy and mass limit are global quantities, they could provide some hints to the value of entropy and energy of the dual gauge matter before and during the thermal

4 nodes3 linksoverview previewHolographic Magnetic Star
4 nodes3 links
Holographic Magnetic Star4 visible / 4 total nodes / 4 links
Co-authorshipAuthorshipAuthorshipTopic signalWHolographic Magnetic Starpreprint / 2012APiyabut BurikhamResearcherATossaporn ChullaphanResearcherThep-th13268 works
PaperSignal 103 links

Holographic Magnetic Star

preprint / 2012

Open