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dc.contributor.authorCorsico, Alejandro H.
dc.contributor.authorAlthaus, Leandro G.
dc.contributor.authorMiller Bartolami, Marcelo M.
dc.contributor.authorKepler, S.O.
dc.contributor.authorGarcía-Berro Montilla, Enrique
dc.contributor.otherUniversitat Politècnica de Catalunya. Departament de Física Aplicada
dc.date.accessioned2015-05-27T12:06:23Z
dc.date.available2015-05-27T12:06:23Z
dc.date.created2014-08-01
dc.date.issued2014-08-01
dc.identifier.citationCorsico, A. [et al.]. Constraining the neutrino magnetic dipole moment from white dwarf pulsations. "Journal of cosmology and astroparticle physics", 01 Agost 2014, núm. 8, p. 1-19.
dc.identifier.issn1475-7516
dc.identifier.urihttp://hdl.handle.net/2117/28064
dc.description.abstractPulsating white dwarf stars can be used as astrophysical laboratories to constrain the properties of weakly interacting particles. Comparing the cooling rates of these stars with the expected values from theoretical models allows us to search for additional sources of cooling due to the emission of axions, neutralinos, or neutrinos with magnetic dipole moment. In this work, we derive an upper bound to the neutrino magnetic dipole moment (mu(nu)) using an estimate of the rate of period change of the pulsating DB white dwarf star PG 1351+489. We employ state-of-the-art evolutionary and pulsational codes which allow us to perform a detailed asteroseismological period fit based on fully DB white dwarf evolutionary sequences. Plasmon neutrino emission is the dominant cooling mechanism for this class of hot pulsating white dwarfs, and so it is the main contributor to the rate of change of period with time ((Pi) over dot) for the DBV class. Thus, the inclusion of an anomalous neutrino emission through a non-vanishing magnetic dipole moment in these sequences notably influences the evolutionary timescales, and also the expected pulsational properties of the DBV stars. By comparing the theoretical ((Pi) over dot) value with the rate of change of period with time of PG 1351+489, we assess the possible existence of additional cooling by neutrinos with magnetic dipole moment. Our models suggest the existence of some additional cooling in this pulsating DB white dwarf, consistent with a non-zero magnetic dipole moment with an upper limit of mu(nu) less than or similar to 10(-11) mu(B). This bound is somewhat less restrictive than, but still compatible with, other limits inferred from the white dwarf luminosity function or from the color-magnitude diagram of the Globular cluster M5. Further improvements of the measurement of the rate of period change of the dominant pulsation mode of PG 1351+489 will be necessary to confirm our bound.
dc.format.extent19 p.
dc.language.isoeng
dc.rightsAttribution-NonCommercial-NoDerivs 3.0 Spain
dc.rights.urihttp://creativecommons.org/licenses/by-nc-nd/3.0/es/
dc.subjectÀrees temàtiques de la UPC::Física::Astronomia i astrofísica
dc.subject.lcshWhite dwarf stars
dc.subject.lcshStarts -- Evolution
dc.subject.otherwhite and brown dwarfs
dc.subject.otherneutrino properties
dc.subject.otherstars
dc.subject.otherPG-1159 EVOLUTIONARY MODELS
dc.subject.otherVIRGINIS VARIABLE-STARS
dc.subject.otherASTEROSEISMOLOGICAL CONSTRAINTS
dc.subject.otherINSTABILITY STRIP
dc.subject.otherAXION MASS
dc.subject.otherG117-B15A
dc.subject.otherPG-1351+489
dc.subject.otherPHYSICS
dc.subject.otherPLASMA
dc.subject.otherLIMITS
dc.titleConstraining the neutrino magnetic dipole moment from white dwarf pulsations
dc.typeArticle
dc.subject.lemacEstels nans
dc.subject.lemacNeutrins
dc.contributor.groupUniversitat Politècnica de Catalunya. GAA - Grup d'Astronomia i Astrofísica
dc.identifier.doi10.1088/1475-7516/2014/08/054
dc.description.peerreviewedPeer Reviewed
dc.rights.accessOpen Access
local.identifier.drac15251992
dc.description.versionPostprint (author’s final draft)
local.citation.authorCorsico, A.; Althaus, L. G.; Miller, M.M; Kepler, S.; Garcia-berro, E.
local.citation.publicationNameJournal of cosmology and astroparticle physics
local.citation.number8
local.citation.startingPage1
local.citation.endingPage19


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