Acoustic perturbations on steady spherical accretion in Schwarzschild geometry

dc.contributor.authorNaskar, Tapan
dc.contributor.authorRay, Arnab K.
dc.date.accessioned2012-03-05T10:15:53Z
dc.date.available2012-03-05T10:15:53Z
dc.date.issued2007-06-10
dc.description.abstractThe stationary background flow in the spherically symmetric infall of a compressible fluid, coupled to the space-time defined by the static chwarzschild metric, has been subjected to linearized acoustic perturbations. The perturbative procedure is based on the continuity condition and it shows that the coupling of the flow with the geometry of space-time brings about greater stability for the flow, to the extent that the amplitude of the perturbation, treated as a standing wave, decays in time, as opposed to the amplitude remaining constant in the Newtonian limit. In ualitative terms this situation simulates the effect of a dissipative mechanism in the classical Bondi accretion flow, defined in the Newtonian construct of space and time. As a result of this approach it becomes impossible to define an acoustic metric for a conserved spherically symmetric flow, described within the framework of Schwarzschild geometry. In keeping with this view, the perturbation, considered eparately as a high-frequency travelling wave, also has its amplitude reduced.en_US
dc.identifier.urihttp://hdl.handle.net/11007/445
dc.language.isoenen_US
dc.relation.ispartofseriesIUCAA Preprint;37/07
dc.subjectInfall and accretionen_US
dc.subjectBlack holesen_US
dc.subjectPerturbationen_US
dc.titleAcoustic perturbations on steady spherical accretion in Schwarzschild geometryen_US
dc.typeArticleen_US

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