A Multivariate Fit Luminosity Function And World Model For Long Gamma-Ray Bursts

dc.contributor.utaustinauthorShahmoradi, Amiren_US
dc.creatorShahmoradi, Amiren_US
dc.date.accessioned2016-04-28T19:35:04Z
dc.date.available2016-04-28T19:35:04Z
dc.date.issued2013-04en
dc.description.abstractIt is proposed that the luminosity function, the rest-frame spectral correlations, and distributions of cosmological long-duration (Type-II) gamma-ray bursts (LGRBs) may be very well described as a multivariate log-normal distribution. This result is based on careful selection, analysis, and modeling of LGRBs' temporal and spectral variables in the largest catalog of GRBs available to date: 2130 BATSE GRBs, while taking into account the detection threshold and possible selection effects. Constraints on the joint rest-frame distribution of the isotropic peak luminosity (L-iso), total isotropic emission (E-iso), the time-integrated spectral peak energy (E-p,E-z), and duration (T-90,T-z) of LGRBs are derived. The presented analysis provides evidence for a relatively large fraction of LGRBs that have been missed by the BATSE detector with E-iso extending down to similar to 10(49) erg and observed spectral peak energies (Ep) as low as similar to 5 keV. LGRBs with rest-frame duration T-90,T-z less than or similar to 1 s or observer-frame duration T-90 less than or similar to 2 s appear to be rare events (less than or similar to 0.1% chance of occurrence). The model predicts a fairly strong but highly significant correlation (rho = 0.58 +/- 0.04) between E-iso and E-p,E-z of LGRBs. Also predicted are strong correlations of L-iso and E-iso with T-90,T-z and moderate correlation between L-iso and E-p,E-z. The strength and significance of the correlations found encourage the search for underlying mechanisms, though undermine their capabilities as probes of dark energy's equation of Stateat high redshifts. The presented analysis favors-but does not necessitate-a cosmic rate for BATSE LGRBs tracing metallicity evolution consistent with a cutoff Z/Z(circle dot) similar to 0.2-0.5, assuming no luminosity-redshift evolution.en_US
dc.description.departmentInstitute for Fusion Studiesen_US
dc.description.sponsorshipen_US
dc.identifierdoi:10.15781/T2BZ3Z
dc.identifier.Filename2013_04_multivariatefit.pdfen_US
dc.identifier.citationShahmoradi, Amir. "A Multivariate Fit Luminosity Function and World Model for Long Gamma-Ray Bursts." The Astrophysical Journal, Vol. 766, No. 2 (Apr., 2013): 111.en_US
dc.identifier.doi10.1088/0004-637x/766/2/111en_US
dc.identifier.issn0004-637Xen_US
dc.identifier.urihttp://hdl.handle.net/2152/34816
dc.language.isoEnglishen_US
dc.relation.ispartofen_US
dc.relation.ispartofserialAstrophysical Journalen_US
dc.rightsAdministrative deposit of works to Texas ScholarWorks: This works author(s) is or was a University faculty member, student or staff member; this article is already available through open access or the publisher allows a PDF version of the article to be freely posted online. The library makes the deposit as a matter of fair use (for scholarly, educational, and research purposes), and to preserve the work and further secure public access to the works of the University.en_US
dc.rights.restrictionOpenen_US
dc.subjectdark energyen_US
dc.subjectgamma-ray burst: generalen_US
dc.subjectmethods: statisticalen_US
dc.subjecthigh-energy correlationsen_US
dc.subjectstar-formation historyen_US
dc.subjectpeak-energyen_US
dc.subjectspectralen_US
dc.subjectcharacteristicsen_US
dc.subjectcosmological signaturesen_US
dc.subjectredshift distributionen_US
dc.subjectdetector thresholdsen_US
dc.subjectstandard candlesen_US
dc.subjecthost galaxiesen_US
dc.subjectbatseen_US
dc.subjectastronomy & astrophysicsen_US
dc.titleA Multivariate Fit Luminosity Function And World Model For Long Gamma-Ray Burstsen_US
dc.typeArticleen_US

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