Fundamental Accretion and Ejection Astrophysics

dc.creatorMiller, J. M.
dc.creatorNowak, M.
dc.creatorNandra, K.
dc.creatorBrandt, W. N.
dc.creatorMatt, G.
dc.creatorCappi, M.
dc.creatorRisaliti, G.
dc.creatorKitamoto, S.
dc.creatorPaerels, F.
dc.creatorWatson, M.
dc.creatorSmith, R.
dc.creatorWeisskopf, M.
dc.creatorTerashima, Y.
dc.creatorUeda, Y.
dc.date2009-02-26
dc.date.accessioned2026-07-07T12:47:12Z
dc.date.available2026-07-07T12:47:12Z
dc.descriptionDisk accretion may be the fundamental astrophysical process. Stars and planets form through the accretion of gas in a disk. Black holes and galaxies co-evolve through efficient disk accretion onto the central supermassive black hole. Indeed, approximately 20 percent of the ionizing radiation in the universe is supplied by disk accretion onto black holes. And large-scale structures - galaxy clusters - are dramatically affected by the relativistic jets that result from accretion onto black holes. Yet, we are still searching for observational answers to some very basic questions that underlie all aspects of the feedback between black holes and their host galaxies: How do disks transfer angular momentum to deliver gas onto compact objects? How do accretion disks launch winds and jets?
dc.descriptionAstro 2010 Science White Paper
dc.identifierhttps://arxiv.org/abs/0902.4683
dc.identifierhttp://arxiv.org/abs/0902.4683
dc.identifier.urihttp://salesiana.dossiersoluciones.com/handle/123456789/221639
dc.subjectHigh Energy Astrophysical Phenomena
dc.subjectCosmology and Nongalactic Astrophysics
dc.titleFundamental Accretion and Ejection Astrophysics
dc.typetext

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