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Growing Supermassive Black Holes by Chaotic Accretion

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arxiv astro-ph/0609598 v1 pith:724PARTP submitted 2006-09-21 astro-ph

Growing Supermassive Black Holes by Chaotic Accretion

classification astro-ph
keywords accretionholeangularholesmassspinblackchaotic
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We consider the problem of growing the largest supermassive black holes from stellar--mass seeds at high redshift. Rapid growth without violating the Eddington limit requires that most mass is gained while the hole has a low spin and thus a low radiative accretion efficiency. If, as was formerly thought, the black--hole spin aligns very rapidly with the accretion flow, even a randomly--oriented sequence of accretion events would all spin up the hole and prevent rapid mass growth. However, using a recent result that the Bardeen--Petterson effect causes {\it counter}alignment of hole and disc spins under certain conditions, we show that holes can grow rapidly in mass if they acquire most of it in a sequence of randomly oriented accretion episodes whose angular momenta $J_d$ are no larger than the hole's angular momentum $J_h$. Ultimately the hole has total angular momentum comparable with the last accretion episode. This points to a picture in which the accretion is chaotic on a lengthscale of order the disc size, that is $\la 0.1$ pc.

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Forward citations

Cited by 2 Pith papers

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    astro-ph.HE 2026-07 conditional novelty 5.0

    Reflection-based black-hole spin measurements should be graded by detectability, uniqueness, and robustness, and classified into high-confidence, systematics-limited, provisional, or non-assessable tiers.

  2. Progenitor of the recoiling super-massive black hole RBH-1 identified using HST/JWST imaging

    astro-ph.HE 2026-01 conditional novelty 4.0

    The 954 km/s runaway speed of RBH-1 implies its progenitor was a precessing, nearly equal-mass binary with a rapidly spinning primary black hole.