Spinning primordial black holes formed during a matter-dominated era
Journal of Cosmology and Astroparticle Physics IOP Publishing 2023:10 (2023) 067-067
Abstract:
This review is an up-to-date account of the use of numerical relativity to study dynamical, strong-gravity environments in a cosmological context. First, we provide a gentle introduction into the use of numerical relativity in solving cosmological spacetimes, aimed at both cosmologists and numerical relativists. Second, we survey the present body of work, focusing on general relativistic simulations, organised according to the cosmological history鈥攆rom cosmogenesis, through the early hot Big Bang, to the late-time evolution of the universe. We discuss the present state-of-the-art, and suggest directions in which future work can be fruitfully pursuedElectromagnetic instability of compact axion stars
Physical Review D American Physical Society (APS) 108:6 (2023) l061302
GRDzhadzha: A code for evolving relativistic matter on analytic metric backgrounds
ArXiv 2308.08299 (2023)
Oscillon formation during inflationary preheating with general relativity
Physical Review D American Physical Society (APS) 108:2 (2023) 023501
Spinning primordial black holes formed during a matter-dominated era
ArXiv 2306.1181 (2023)