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The Process of Stellar Tidal Disruption by Supermassive Black Holes. The first pericenter passage

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arxiv 2005.12528 v1 pith:VEQQHMWX submitted 2020-05-26 astro-ph.HE

classification astro-ph.HE
keywords disruptiontidalstellarblackmodelsprocessreviewtdes
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Tidal disruption events (TDEs) are among the brightest transients in the optical, ultraviolet, and X-ray sky. These flares are set into motion when a star is torn apart by the tidal field of a massive black hole, triggering a chain of events which is -- so far -- incompletely understood. However, the disruption process has been studied extensively for almost half a century, and unlike the later stages of a TDE, our understanding of the disruption itself is reasonably well converged. In this Chapter, we review both analytical and numerical models for stellar tidal disruption. Starting with relatively simple, order-of-magnitude physics, we review models of increasing sophistication, the semi-analytic ``affine formalism,'' hydrodynamic simulations of the disruption of polytropic stars, and the most recent hydrodynamic results concerning the disruption of realistic stellar models. Our review surveys the immediate aftermath of disruption in both typical and more unusual TDEs, exploring how the fate of the tidal debris changes if one considers non-main sequence stars, deeply penetrating tidal encounters, binary star systems, and sub-parabolic orbits. The stellar tidal disruption process provides the initial conditions needed to model the formation of accretion flows around quiescent massive black holes, and in some cases may also lead to directly observable emission, for example via shock breakout, gravitational waves or runaway nuclear fusion in deeply plunging TDEs.

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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. Black hole-accretion disk collision in general relativity: Axisymmetric simulations

    astro-ph.HE 2025-04 conditional novelty 6.0 of 10

    Black hole-disk collisions eject less mass than earlier models, with flare luminosity near the Eddington limit, while sustained super-Eddington accretion onto the black hole lasts for about a million Schwarzschild tim...

  2. Review: Accretion Disk Evolution in Tidal Disruption Events

    astro-ph.HE 2025-05 unverdicted novelty 2.0 of 10

    A tidal disruption event's accretion disk is expected to undergo a thermal-viscous instability that makes it collapse from a thick to a thin state, but late-time X-ray observations challenge the timing and universalit...

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