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Magnetized Domain Walls in the Deconfined Sakai-Sugimoto Model at Finite Baryon Density

The magnetized pure pion gradient ($\mathcal{5}\phi$) phase in the deconfined Sakai-Sugimoto model is explored at zero and finite temperature. We found that the temperature has very small effects on the phase. The thermodynamical properties of the phase shows that the excitations behave like a scala...

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Detalles Bibliográficos
Autores principales: Burikham, Piyabut, Chullaphan, Tossaporn
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP08(2011)026
http://cds.cern.ch/record/1351001
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author Burikham, Piyabut
Chullaphan, Tossaporn
author_facet Burikham, Piyabut
Chullaphan, Tossaporn
author_sort Burikham, Piyabut
collection CERN
description The magnetized pure pion gradient ($\mathcal{5}\phi$) phase in the deconfined Sakai-Sugimoto model is explored at zero and finite temperature. We found that the temperature has very small effects on the phase. The thermodynamical properties of the phase shows that the excitations behave like a scalar solitonic free particles. By comparing the free energy of the pion gradient phase to the competing multiquark-pion gradient (MQ-$\mathcal{5}\phi$) phase, it becomes apparent that the pure pion gradient is less thermodynamically preferred than the MQ-$\mathcal{5}\phi$ phase. However, in the parameter space where the baryonic chemical potential is smaller than the onset value of the multiquark, the dominating magnetized nuclear matter is the pion gradient phase.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2011
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spelling cern-13510012023-03-14T20:52:10Zdoi:10.1007/JHEP08(2011)026http://cds.cern.ch/record/1351001engBurikham, PiyabutChullaphan, TossapornMagnetized Domain Walls in the Deconfined Sakai-Sugimoto Model at Finite Baryon DensityParticle Physics - TheoryThe magnetized pure pion gradient ($\mathcal{5}\phi$) phase in the deconfined Sakai-Sugimoto model is explored at zero and finite temperature. We found that the temperature has very small effects on the phase. The thermodynamical properties of the phase shows that the excitations behave like a scalar solitonic free particles. By comparing the free energy of the pion gradient phase to the competing multiquark-pion gradient (MQ-$\mathcal{5}\phi$) phase, it becomes apparent that the pure pion gradient is less thermodynamically preferred than the MQ-$\mathcal{5}\phi$ phase. However, in the parameter space where the baryonic chemical potential is smaller than the onset value of the multiquark, the dominating magnetized nuclear matter is the pion gradient phase.The magnetized pure pion gradient ($\mathcal{5}\phi$) phase in the deconfined Sakai-Sugimoto model is explored at zero and finite temperature. We found that the temperature has very small effects on the phase. The thermodynamical properties of the phase shows that the excitations behave like a scalar solitonic free particles. By comparing the free energy of the pion gradient phase to the competing multiquark-pion gradient (MQ-$\mathcal{5}\phi$) phase, it becomes apparent that the pure pion gradient is less thermodynamically preferred than the MQ-$\mathcal{5}\phi$ phase. However, in the parameter space where the baryonic chemical potential is smaller than the onset value of the multiquark, the dominating magnetized nuclear matter is the pion gradient phase.arXiv:1105.2729CERN-PH-TH-2011-113CERN-PH-TH-2011-113oai:cds.cern.ch:13510012011-05-16
spellingShingle Particle Physics - Theory
Burikham, Piyabut
Chullaphan, Tossaporn
Magnetized Domain Walls in the Deconfined Sakai-Sugimoto Model at Finite Baryon Density
title Magnetized Domain Walls in the Deconfined Sakai-Sugimoto Model at Finite Baryon Density
title_full Magnetized Domain Walls in the Deconfined Sakai-Sugimoto Model at Finite Baryon Density
title_fullStr Magnetized Domain Walls in the Deconfined Sakai-Sugimoto Model at Finite Baryon Density
title_full_unstemmed Magnetized Domain Walls in the Deconfined Sakai-Sugimoto Model at Finite Baryon Density
title_short Magnetized Domain Walls in the Deconfined Sakai-Sugimoto Model at Finite Baryon Density
title_sort magnetized domain walls in the deconfined sakai-sugimoto model at finite baryon density
topic Particle Physics - Theory
url https://dx.doi.org/10.1007/JHEP08(2011)026
http://cds.cern.ch/record/1351001
work_keys_str_mv AT burikhampiyabut magnetizeddomainwallsinthedeconfinedsakaisugimotomodelatfinitebaryondensity
AT chullaphantossaporn magnetizeddomainwallsinthedeconfinedsakaisugimotomodelatfinitebaryondensity