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Magnetically Arrested Disk: an Energetically Efficient Accretion Flow: Fig. 1

dash.depositing.authorNarayan, Ramesh::dc7afe5d74d62c7b451015317ea2ccbe::600
dash.licenseMETA_ONLY
dash.source.pageL69-L72
dash.source.volume55;6
dash.workflow.comments1Science Serial ID 84614
dc.contributor.authorNarayan, Ramesh
dc.contributor.authorIgumenshchev, Igor V.
dc.contributor.authorAbramowicz, Marek A.
dc.date.accessioned2019-09-22T14:24:04Z
dc.date.available2019-09-22T14:24:04Z
dc.date.issued2003
dc.description.abstractWe consider an accretion flow model originally proposed by Bisnovatyi-Kogan and Ruzmaikin (1974), which has been confirmed in recent 3D MHD simulations. In the model, the accreting gas drags in a strong poloidal magnetic field to the center such that the accumulated field disrupts the axisymmetric accretion flow at a relatively large radius. Inside the disruption radius, the gas accretes as discrete blobs or streams with a velocity much less than the free-fall velocity. Almost the entire rest mass energy of the gas is released as heat, radiation and mechanical/magnetic energy. Even for a non-rotating black hole, the efficiency of converting mass to energy is of order 50% or higher. The model is thus a practical analog of an idealized engine proposed by Geroch and Bekenstein.
dc.description.versionVersion of Record
dc.identifier.citationNarayan, Ramesh, Igor V. Igumenshchev, and Marek A. Abramowicz. 2003. “Magnetically Arrested Disk: An Energetically Efficient Accretion Flow: Fig. 1.” Publications of the Astronomical Society of Japan 55 (6): L69–72. https://doi.org/10.1093/pasj/55.6.l69.
dc.identifier.doi10.1093/pasj/55.6.L69
dc.identifier.issn0004-6264
dc.identifier.issn2053-051X
dc.identifier.urihttp://nrs.harvard.edu/urn-3:HUL.InstRepos:41384893*
dc.language.isoen_US
dc.publisherOxford University Press
dc.relation.journalPublications of the Astronomical Society of Japan
dc.titleMagnetically Arrested Disk: an Energetically Efficient Accretion Flow: Fig. 1
dc.typeJournal Article
dspace.entity.typePublication
oaire.licenseConditionMETA_ONLY

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