Peripheral collisions of heavy ions can give rise to extremely intense magnetic fields. It has been suggested that these fields might invalidate the holographic description of the corresponding quark–gluon plasmas, assuming that these can be modelled by strongly coupled field theories. In the case of the plasmas produced in collisions at the RHIC facility (including in the beam energy scans), it is known how to deal with this problem: one has to take into account the large angular momenta generated in these plasmas, and the effects of the baryonic chemical potential. But this does not work for the plasmas produced in peripheral collisions at the LHC. However, these results neglect some (less significant) aspects of bulk physics; could it be...
We investigate QCD-like gauge theories at strong coupling at a finite magnetic field B, temperature ...
We develop a holographic (bottom-up) gravity model for QCD to understand the connection between the ...
In off-central heavy-ion collisions, quark-gluon plasma (QGP) is exposed to the strongest magnetic f...
AbstractIn applying the gauge–gravity duality to the quark–gluon plasma, one models the plasma using...
Heavy ion collisions at the LHC facility generate a Quark-Gluon Plasma (QGP) which, for central coll...
This is a contribution for the Proceedings of 5th International Conference on New Frontiers in Physi...
The quark chemical potential is one of the fundamental parameters describing the quark–gluon plasma ...
AbstractThe quark chemical potential is one of the fundamental parameters describing the quark–gluon...
We review construction of the improved holographic models for QCD-like confining gauge theories and ...
In this work I explore theoretical and phenomenological implications of chemical potentials and char...
In this thesis, QCD is studied from three different directions, with one overarching theme: holograp...
Thesis (Ph.D.)--University of Washington, 2016-08Since it was conjectured almost 20 years ago, AdS/C...
AbstractMagnetic fields large enough to be observable are ubiquitous in astrophysics, even at extrem...
We study the effects of the temperature and of a magnetic field in the setup of an intersection of D...
There has been much recent progress in describing heavy ion collisions using strongly coupled method...
We investigate QCD-like gauge theories at strong coupling at a finite magnetic field B, temperature ...
We develop a holographic (bottom-up) gravity model for QCD to understand the connection between the ...
In off-central heavy-ion collisions, quark-gluon plasma (QGP) is exposed to the strongest magnetic f...
AbstractIn applying the gauge–gravity duality to the quark–gluon plasma, one models the plasma using...
Heavy ion collisions at the LHC facility generate a Quark-Gluon Plasma (QGP) which, for central coll...
This is a contribution for the Proceedings of 5th International Conference on New Frontiers in Physi...
The quark chemical potential is one of the fundamental parameters describing the quark–gluon plasma ...
AbstractThe quark chemical potential is one of the fundamental parameters describing the quark–gluon...
We review construction of the improved holographic models for QCD-like confining gauge theories and ...
In this work I explore theoretical and phenomenological implications of chemical potentials and char...
In this thesis, QCD is studied from three different directions, with one overarching theme: holograp...
Thesis (Ph.D.)--University of Washington, 2016-08Since it was conjectured almost 20 years ago, AdS/C...
AbstractMagnetic fields large enough to be observable are ubiquitous in astrophysics, even at extrem...
We study the effects of the temperature and of a magnetic field in the setup of an intersection of D...
There has been much recent progress in describing heavy ion collisions using strongly coupled method...
We investigate QCD-like gauge theories at strong coupling at a finite magnetic field B, temperature ...
We develop a holographic (bottom-up) gravity model for QCD to understand the connection between the ...
In off-central heavy-ion collisions, quark-gluon plasma (QGP) is exposed to the strongest magnetic f...