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Rotating strings and energy loss in non-conformal holography

We study the energy lost by an accelerating quark probe in the quark-gluon plasma produced in the heavy ion collisions in an approximate setting where the acceleration of the probe is due to uniform circular motion. The energy loss rate of the rotating probe is calculated at strong coupling in the c...

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Detalles Bibliográficos
Autores principales: Ali-Akbari, Mohammad, Gursoy, Umut
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP01(2012)105
http://cds.cern.ch/record/1393971
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author Ali-Akbari, Mohammad
Gursoy, Umut
author_facet Ali-Akbari, Mohammad
Gursoy, Umut
author_sort Ali-Akbari, Mohammad
collection CERN
description We study the energy lost by an accelerating quark probe in the quark-gluon plasma produced in the heavy ion collisions in an approximate setting where the acceleration of the probe is due to uniform circular motion. The energy loss rate of the rotating probe is calculated at strong coupling in the confining SU(N) gauge theory based on N D4 branes on a circle, using the rotating string solutions in the dual gravitational background. The system is known to exhibit a confinement-deconfinement transition at a finite temperature T_c. We investigate energy loss both in the low and the high T phases. The high T phase is similar to the previously studied case of the conformal plasma, yet we find qualitative differences due to non-conformality of the underlying theory. The low T phase, on the other hand exhibits novel interesting behavior: We find a dual gravitational mechanism that yields a lower bound on the emitted energy of the rotating quark, proportional to the mass gap in the glueball spectrum. The low T energy loss is argued to be completely due to glueball brehmstrahlung, hence the energy loss rate calculated here determines the Lienard potential for syncrotron radiation in this confining gauge theory at strong coupling.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
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spelling cern-13939712023-10-04T06:56:23Zdoi:10.1007/JHEP01(2012)105http://cds.cern.ch/record/1393971engAli-Akbari, MohammadGursoy, UmutRotating strings and energy loss in non-conformal holographyParticle Physics - TheoryWe study the energy lost by an accelerating quark probe in the quark-gluon plasma produced in the heavy ion collisions in an approximate setting where the acceleration of the probe is due to uniform circular motion. The energy loss rate of the rotating probe is calculated at strong coupling in the confining SU(N) gauge theory based on N D4 branes on a circle, using the rotating string solutions in the dual gravitational background. The system is known to exhibit a confinement-deconfinement transition at a finite temperature T_c. We investigate energy loss both in the low and the high T phases. The high T phase is similar to the previously studied case of the conformal plasma, yet we find qualitative differences due to non-conformality of the underlying theory. The low T phase, on the other hand exhibits novel interesting behavior: We find a dual gravitational mechanism that yields a lower bound on the emitted energy of the rotating quark, proportional to the mass gap in the glueball spectrum. The low T energy loss is argued to be completely due to glueball brehmstrahlung, hence the energy loss rate calculated here determines the Lienard potential for syncrotron radiation in this confining gauge theory at strong coupling.We study the energy lost by an accelerating quark probe in the quark-gluon plasma produced in the heavy ion collisions in an approximate setting where the acceleration of the probe is due to uniform circular motion. The energy loss rate of the rotating probe is calculated at strong coupling in the confining SU(N) gauge theory based on N D4 branes on a circle, using the rotating string solutions in the dual gravitational background. The system is known to exhibit a confinement-deconfinement transition at a finite temperature T_c. We investigate energy loss both in the low and the high T phases. The high T phase is similar to the previously studied case of the conformal plasma, yet we find qualitative differences due to non-conformality of the underlying theory. The low T phase, on the other hand exhibits novel interesting behavior: We find a dual gravitational mechanism that yields a lower bound on the emitted energy of the rotating quark, proportional to the mass gap in the glueball spectrum. The low T energy loss is argued to be completely due to glueball brehmstrahlung, hence the energy loss rate calculated here determines the Lienard potential for syncrotron radiation in this confining gauge theory at strong coupling.arXiv:1110.5881IPM-P-2011-044CERN-PH-TH-2011-258NSF-KITP-11-219CERN-PH-TH-2011-258CERN-PH-TH-2011-285-[SIC!]oai:cds.cern.ch:13939712011-10-27
spellingShingle Particle Physics - Theory
Ali-Akbari, Mohammad
Gursoy, Umut
Rotating strings and energy loss in non-conformal holography
title Rotating strings and energy loss in non-conformal holography
title_full Rotating strings and energy loss in non-conformal holography
title_fullStr Rotating strings and energy loss in non-conformal holography
title_full_unstemmed Rotating strings and energy loss in non-conformal holography
title_short Rotating strings and energy loss in non-conformal holography
title_sort rotating strings and energy loss in non-conformal holography
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP01(2012)105
http://cds.cern.ch/record/1393971
work_keys_str_mv AT aliakbarimohammad rotatingstringsandenergylossinnonconformalholography
AT gursoyumut rotatingstringsandenergylossinnonconformalholography