Keep in mind as well that no observation has yet distinguished between a neutron star and a black hole. i.e. all those photos of super massive objects could be neutron stars, and we would not be able to tell the difference. They are assumed to be black holes because of the mass, but if there is something in the law of physics that prevents black holes from forming we would not know. We do not have a theory on quark d…
I think you’re confusing the lack of knowledge of whether or not singularities really form, with whether or not black holes form. There are very clearly black holes, but of course we can have no way of knowing if they contain singularities. Quark stars could exist, it not with the masses observed in Sag A*. Quark degeneracy pressure isn’t going to support the mass of millions, or even billions of suns. It might be th…
> Quark degeneracy pressure isn’t going to support the mass of millions, or even billions of suns.
Why not? If the star is very large the density (and thus gravity) never get high enough.
For example, if you consider the milky way as a single object, then that's an object resisting the mass of billions of suns.
The mass is irrelevant, what matters is the density.
> As for time dilation... no. In no way could that magically overcome collapse.
It can keep mass from ever reaching the surface of the black hole (singularity). At least as far as we are concerned. It takes mass an infinite time to actually get to the surface, so the black hole can never grow.