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Magnetized strangelets at finite temperature

dc.contributor.authorGonzalez Felipe, R.
dc.contributor.authorLopez Fune, E.
dc.contributor.authorManreza Paret, D.
dc.contributor.authorPerez Martinez, A.
dc.date.accessioned2012-10-25T17:53:20Z
dc.date.available2012-10-25T17:53:20Z
dc.date.issued2012-04
dc.description.abstractThe main properties of strangelets, namely their energy per baryon, radius and electric charge, are studied in the unpaired magnetized strange quark matter (MSQM) and paired magnetized colour flavour locked (MCFL) phases. Temperature effects are taken into account in order to study their stability compared to the Fe-56 isotope and nonmagnetized strangelets within the framework of the MIT bag model. We conclude that the presence of a magnetic field tends to stabilize the strangelets more, even when temperature is considered. It is also shown that MCFL strangelets are more stable than ordinary MSQM strangelets for typical gap values of the order of O(100) MeV. A distinctive feature in the detection of strangelets either in cosmic rays or in heavy-ion collider experiments could be their electric charge. We find that the electric charge is modified in the presence of the magnetic field, leading to higher (lower) charge values for MSQM (MCFL) strangelets, when compared to the nonmagnetized case.por
dc.identifier.citationGonzalez F R, Lopez F, Manreza P, Perez Martinez A. Magnetized strangelets at finite temperature. Journal of Physics G-Nuclear and Particle Physics. 2012; 4 (39).por
dc.identifier.issn0954-3899
dc.identifier.urihttp://hdl.handle.net/10400.21/1832
dc.language.isoengpor
dc.peerreviewedyespor
dc.relation.ispartofseries;045006
dc.subjectLiquid-Drop Modelpor
dc.subjectQuark Matterpor
dc.subjectNeutron-Starspor
dc.subjectQCD Matterpor
dc.subjectFieldpor
dc.subjectSuperconductivitypor
dc.subjectSurfacepor
dc.subjectRadiuspor
dc.subjectChargepor
dc.subjectPhasepor
dc.titleMagnetized strangelets at finite temperaturepor
dc.typejournal article
dspace.entity.typePublication
oaire.citation.conferencePlaceBristolpor
oaire.citation.issue4por
oaire.citation.titleJournal of Physics G-Nuclear and Particle Physicspor
oaire.citation.volume39por
rcaap.rightsrestrictedAccesspor
rcaap.typearticlepor

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