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Estimation and Effects of the mass outflow rate from shock compressed flow around compact objects

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arxiv astro-ph/9910014 v1 pith:2SZNVS54 submitted 1999-10-01 astro-ph

classification astro-ph
keywords outflowsoutflowbarrierratesystemscompactcompressedeffects
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Outflows are common in many astrophysical systems which contain black holes and neutron stars. Difference between stellar outflows and outflows from these systems is that the outflows in these systems have to form out of the inflowing material only. The inflowing material can form a hot and dense cloud surrounding the compact object, either because of a centrifugal barrier, or a denser barrier due to pair plasma or pre-heating effects. This barrier behaves like a stellar surface as far as the mass loss is concerned. We estimate the outflow rate from the regions of shock compressed flow. The outflow rate is directly related to the compression ratio of the gas at the shocks. These estimated rates roughly match the rates in real observations as well as those obtained from numerical experiments. In special geometries, where the solid angle of the outflow is higher, the disk evacuation takes place creating quiescence states. Outflows are shown to be important in deciding the spectral states and Quasi Periodic Oscillations (QPO)s of observed X-rays.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Simulation based parameter space for shock in transonic, sub-Keplerian accretion flow onto non-rotating black holes

    astro-ph.HE 2026-06 unverdicted novelty 6.0 of 10

    Multi-dimensional simulations show that the parameter space for shocks in non-dissipative transonic sub-Keplerian accretion flows is substantially larger than the analytic prediction, with dynamic boundary layers prod...

  2. Revisiting Disc-Jet Coupling in Black Hole X-ray Binaries: On the Nature of Disc Dynamics and Jet Velocity

    astro-ph.HE 2025-07 conditional novelty 5.0 of 10

    Across thirteen black hole X-ray binaries, type-A QPOs show negative lags and often precede radio flares, type-B QPOs accompany the flares, and inferred soft-intermediate-state jet velocities are moderately relativistic.

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