Gravitational Collapse of Massless Vector Field with Positive Cosmological Constant
arXiv:2204.04443
Abstract
We investigate the dynamics of homogeneous gravitational collapse of a massless vector field in the presence of a positive cosmological constant . The corresponding density function obtained for the massless vector field is inversely proportional to the fourth power of the scale factor . The variation of the scale factor shows that for , we obtain the gravitational collapse of the vector fields leading singularity formation in a {\it finite} comoving time resulting in a {\it Blackhole} such that with increasing , the singularity formation time, increases. For , we obtain , thus limiting the maximum value of , (w.r.t the initial density ) for which the system could collapse under gravity.
4 pages, 2 figures