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Eight billion asteroids in the Oort cloud

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arxiv 1410.7403 v1 pith:FA7X3V3D submitted 2014-10-27 astro-ph.EP astro-ph.SR

classification astro-ph.EPastro-ph.SR
keywords cloudoortasteroidsshouldbillionbodiesformationhard
verification ladder T0 review T1 audit T2 compute T3 formal
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The Oort cloud is usually thought of as a collection of icy comets inhabiting the outer reaches of the Solar system, but this picture is incomplete. We use simulations of the formation of the Oort cloud to show that ~4% of the small bodies in the Oort cloud should have formed within 2.5 au of the Sun, and hence be ice-free rock-iron bodies. If we assume these Oort cloud asteroids have the same size distribution as their cometary counterparts, the Large Synoptic Survey Telescope should find roughly a dozen Oort cloud asteroids during ten years of operations. Measurement of the asteroid fraction within the Oort cloud can serve as an excellent test of the Solar system's formation and dynamical history. Oort cloud asteroids could be of particular concern as impact hazards as their high mass density, high impact velocity, and low visibility make them both hard to detect and hard to divert or destroy. However, they should be a rare class of object, and we estimate globally catastrophic collisions should only occur about once per billion years.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 45 citations worldwide. Full citation record

  1. How much earlier would LSST have discovered currently known long-period comets?

    astro-ph.EP 2024-12 conditional novelty 6.0 of 10

    A simulated LSST-like survey would have discovered about 40% of known long-period comets at least five years before their perihelion, at roughly double the distance of their actual discovery.

  2. Multi-year Ground-Based Survey Photometry of Active Comet 103P/Hartley 2 and Centaur (2060) Chiron: A Tale of Two Comets in the Pre-LSST Era

    astro-ph.EP 2026-06 unverdicted novelty 4.0 of 10

    Reports asymmetric heliocentric activity slopes for 103P/Hartley 2 and exponential outburst decay plus flattening phase curves for Chiron from ATLAS, ZTF, and LCO photometry.

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