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The formation phase of the solar nebulaHydrodynamical calculations of the collapse of an axisymmetric, rotating protostellar cloud, with radiation transport and without magnetic fields, are presented. The collapse is assumed to start from a centrally condensed sphere of radius 5 x 10 to the 15th cm, a mean density of 4 x 10 to the -15th g/cu cm, a total mass of 1 solar mass, and a total angular momentum of 10 to the 53rd g sq cm per sec. The numerical grid is chosen to resolve the region of disk formation between 1 and 60 AU from the center. Frequency-dependent radiative transfer calculations show how the emergent spectrum of the structure depends upon viewing angle with respect to the rotation axis and how the observed isophotal contours should depend on wavelength and viewing angle. The central part of the protostar, interior to 1 AU, is not resolved numerically but is modeled approximately. At the end of the calculation, this region is found to have a mass of 0.6 solar mass and a ratio of rotational to gravitational energy of about 0.4, sufficiently large to be unstable to nonaxisymmetric perturbations. Although the disk is gravitationally stable according to the local Toomre criterion, the nonaxisymmetric structure in the center is likely to lead to angular momentum transport.
Document ID
19900048598
Acquisition Source
Legacy CDMS
Document Type
Reprint (Version printed in journal)
External Source(s)
Authors
Bodenheimer, Peter
(Lick Observatory, Santa Cruz, CA; Max-Planck-Institut fuer Physik und Astrophysik, Garching Federal Republic of Germany, United States)
Yorke, Harold W.
(Wuerzburg, Universitaet Federal Republic of Germany, United States)
Rozyczka, Michal
(Obserwatorium Astronomiczne Warsaw, Poland)
Tohline, Joel E.
(Louisiana State University Baton Rouge, United States)
Date Acquired
August 14, 2013
Publication Date
June 1, 1990
Publication Information
Publication: Astrophysical Journal, Part 1
Volume: 355
ISSN: 0004-637X
Subject Category
Astrophysics
Accession Number
90A35653
Funding Number(s)
CONTRACT_GRANT: DFG-YO-5/3-2
CONTRACT_GRANT: NSF AST-85-21636
Distribution Limits
Public
Copyright
Other

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