On the global structure of self-gravitating discs for softened gravity |
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Authors: | Jesper Sommer-Larsen,Henrik Vedel,& Uffe Hellsten |
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Affiliation: | Theoretical Astrophysics Center, Juliane Maries Vej 30, DK-2100 Copenhagen Ø, Denmark,;University of California, Lick Observatory, Santa Cruz, CA 95064, USA |
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Abstract: | The effects of gravitational softening on the global structure of self-gravitating discs in centrifugal equilibrium are examined in relation to hydrodynamical/gravitational simulations. The one-parameter spline softening proposed by Hernquist & Katz is used. It is found that if the characteristic size of a disc, r , is comparable to or less than the gravitational softening length, ε, then the cross-section of the simulated disc is significantly larger than that of a no-softening (Newtonian) disc with the same mass and angular momentum. We demonstrate, furthermore, that if r ≲ε/2 then the scaling relation r ∝ε3/4 holds for a given mass and specific angular momentum distribution with mass. Finally, we compare some of the theoretical results obtained in this paper and a previous one with the results of numerical Tree-SPH simulations and find qualitative agreement. |
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Keywords: | gravitation methods: numerical galaxies: kinematics and dynamics galaxies: structure. |
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