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July 1, 1977The Astrophysical Journal261 citations

The physics of dissipational galaxy formation

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JBJames Binney

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Abstract

The literature on nonlinear stages of galaxy formation is briefly reviewed along with arguments that lead to the consideration of a dissipative formation process. Hydrodynamic calculations are presented for the collapse of protogalactic gas clouds at redshifts less than 10; it is assumed that the clouds do not fragment during their first infall, so that the collapse is halted by shock-front formation about a caustic surface. The cooling, later fragmentation, evaporation, and binding-energy loss of such clouds are investigated, and ways in which these processes may have influenced the formation of elliptical and disk galaxies are discussed. A simple model for the formation of the Hubble sequence is outlined in which mass and perturbation morphology, together with the physics governing the cooling of a hydrogen-helium mixture, determine the type of galaxy that is formed from a whole range of protogalactic clouds.

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James Binney (1977) studied this question.

synapsesocial.com/papers/6a20364eeab213b7bb295587https://doi.org/10.1086/155378
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