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Collapse of a Molecular Cloud Core to Stellar Densities: The First Three-Dimensional Calculations

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arxiv astro-ph/9810397 v1 pith:5TB7TQIS submitted 1998-10-24 astro-ph

Collapse of a Molecular Cloud Core to Stellar Densities: The First Three-Dimensional Calculations

classification astro-ph
keywords collapsecalculationscoresecondstellarbinaryclosecloud
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We present results from the first three-dimensional calculations ever to follow the collapse of a molecular cloud core (~ 10^{-18} g cm^{-3}) to stellar densities (> 0.01 g cm^{-3}). The calculations resolve structures over 7 orders of magnitude in spatial extent (~ 5000 AU - 0.1 R_\odot), and over 17 orders of magnitude in density contrast. With these calculations, we consider whether fragmentation to form a close binary stellar system can occur during the second collapse phase. We find that, if the quasistatic core that forms before the second collapse phase is dynamically unstable to the growth of non-axisymmetric perturbations, the angular momentum extracted from the central regions of the core, via gravitational torques, is sufficient to prevent fragmentation and the formation of a close binary during the subsequent second collapse.

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Cited by 2 Pith papers

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    astro-ph.EP 2026-06 unverdicted novelty 6.0

    Observations of the HK Tau binary with JWST reveal gas-phase molecular lines in the low-inclination primary and ice absorption features in the edge-on secondary, enabled by their differing inclinations.

  2. TOI-7154b: A Close-in Massive Brown Dwarf in an Eccentric Orbit

    astro-ph.EP 2026-05 unverdicted novelty 4.0

    TOI-7154b is a 71.7 M_J brown dwarf in an 8.86-day eccentric orbit around a G star, with eccentricity and age suggesting stellar-like fragmentation origins.