We investigate the gravitational collapse of rapidly rotating relativistic supermassive stars by means of 3 + 1 hydrodynamic simulations in conformally flat spacetime of general relativity. We study the evolution of differentially rotating supermassive stars of q ≡ J/M2 ~ 1 (J is the angular momentum, and M is the gravitational mass of the star) from the onset of radial instability at R/M ~ 65 (R is the circumferential radius of the star) to the point at which the conformally flat approximation breaks down. We find that the collapse of a star of q gsim 1, a radially unstable differentially rotating star, forms a black hole of q lesssim 1. The main reason preventing formation of a black hole of q gsim 1 is that quite a large amount of angula...
We present a new three-dimensional fully general-relativistic hydrodynamics code using high-resoluti...
We investigate the rotational core collapse of a rapidly rotating relativistic star by means of a 3+...
We present results from the first 2D and 3D simulations of the collapse of rotating stellar iron cor...
We investigate the collapse of differentially rotating supermassive stars (SMSs) by means of 3+1 hyd...
We study the gravitational collapse of a rotating supermassive star (SMS) by means of a (3+1) hydrod...
We study the gravitational collapse of a rotating supermassive star (SMS) by means of a (3+1) hydrod...
The ‘direct collapse’ scenario has emerged as a promising evolutionary track for the formation of su...
Context. The formation of supermassive black holes by direct collapse would imply the existence of s...
We present results from the first 2+1 and 3+1 simulations of the collapse of rotating stellar iron c...
We present results from the first 2+1 and 3+1 simulations of the collapse of rotating stellar iron c...
We investigate new paths to supermassive black hole formation by considering the general relativisti...
We present new results on the dynamics and gravitational-wave emission from the collapse of differen...
We study the final state of the gravitational collapse of uniformly rotating supramassive neutron st...
A paradigm deeply rooted in modern numerical relativity calculations prescribes the removal of those...
Context. The formation of supermassive black holes possibly takes place via direct collapse, with a ...
We present a new three-dimensional fully general-relativistic hydrodynamics code using high-resoluti...
We investigate the rotational core collapse of a rapidly rotating relativistic star by means of a 3+...
We present results from the first 2D and 3D simulations of the collapse of rotating stellar iron cor...
We investigate the collapse of differentially rotating supermassive stars (SMSs) by means of 3+1 hyd...
We study the gravitational collapse of a rotating supermassive star (SMS) by means of a (3+1) hydrod...
We study the gravitational collapse of a rotating supermassive star (SMS) by means of a (3+1) hydrod...
The ‘direct collapse’ scenario has emerged as a promising evolutionary track for the formation of su...
Context. The formation of supermassive black holes by direct collapse would imply the existence of s...
We present results from the first 2+1 and 3+1 simulations of the collapse of rotating stellar iron c...
We present results from the first 2+1 and 3+1 simulations of the collapse of rotating stellar iron c...
We investigate new paths to supermassive black hole formation by considering the general relativisti...
We present new results on the dynamics and gravitational-wave emission from the collapse of differen...
We study the final state of the gravitational collapse of uniformly rotating supramassive neutron st...
A paradigm deeply rooted in modern numerical relativity calculations prescribes the removal of those...
Context. The formation of supermassive black holes possibly takes place via direct collapse, with a ...
We present a new three-dimensional fully general-relativistic hydrodynamics code using high-resoluti...
We investigate the rotational core collapse of a rapidly rotating relativistic star by means of a 3+...
We present results from the first 2D and 3D simulations of the collapse of rotating stellar iron cor...