The nonlinear behavior of higher dimensional black hole spacetimes is of interest in several contexts, ranging from an understanding of cosmic censorship to black hole production in high-energy collisions. However, nonlinear numerical evolutions of higher dimensional black hole spacetimes are tremendously complex, involving different diagnostic tools and “dimensional reduction methods.” In this work we compare two different successful codes to evolve Einstein’s equations in higher dimensions, and show that the results of such different procedures agree to numerical precision, when applied to the collision from rest of two equal-mass black holes. We calculate the total radiated energy to be Erad/M=(9.0±0.5)×10−4 in five dimensions and Erad/M...
We compute the gravitational wave energy E_(rad) radiated in head-on collisions of equal-mass, nonsp...
Einstein's Theory of General Relativity has proven remarkably successful at modelling a wide range o...
The numerical evolution of Einstein's field equations in a generic background has the potential to a...
The nonlinear behavior of higher dimensional black hole spacetimes is of interest in several context...
The nonlinear behavior of higher dimensional black hole spacetimes is of interest in several context...
We give a status report on our project targeted at performing numerical simulations of a head-on col...
We give a status report on our project targeted at performing numerical simulations of a head-on col...
The first attempts at solving a binary black hole spacetime date back to the 1960s, with the pioneer...
Higher dimensional black holes play an exciting role in fundamental physics, such as high energy phy...
Higher dimensional black holes play an exciting role in fundamental physics, such as high energy phy...
We present an overview of recent developments in numerical relativity studies of higher dimensional ...
The collision of black holes and the emission of gravitational radiation in higher-dimensional space...
We use fully nonlinear numerical relativity techniques to study high energy head-on collision of non...
The collision of black holes and the emission of gravitational radiation in higher-dimensional space...
We present unequal mass head-on collisions of black holes in D = 5 dimensional space-times. We have ...
We compute the gravitational wave energy E_(rad) radiated in head-on collisions of equal-mass, nonsp...
Einstein's Theory of General Relativity has proven remarkably successful at modelling a wide range o...
The numerical evolution of Einstein's field equations in a generic background has the potential to a...
The nonlinear behavior of higher dimensional black hole spacetimes is of interest in several context...
The nonlinear behavior of higher dimensional black hole spacetimes is of interest in several context...
We give a status report on our project targeted at performing numerical simulations of a head-on col...
We give a status report on our project targeted at performing numerical simulations of a head-on col...
The first attempts at solving a binary black hole spacetime date back to the 1960s, with the pioneer...
Higher dimensional black holes play an exciting role in fundamental physics, such as high energy phy...
Higher dimensional black holes play an exciting role in fundamental physics, such as high energy phy...
We present an overview of recent developments in numerical relativity studies of higher dimensional ...
The collision of black holes and the emission of gravitational radiation in higher-dimensional space...
We use fully nonlinear numerical relativity techniques to study high energy head-on collision of non...
The collision of black holes and the emission of gravitational radiation in higher-dimensional space...
We present unequal mass head-on collisions of black holes in D = 5 dimensional space-times. We have ...
We compute the gravitational wave energy E_(rad) radiated in head-on collisions of equal-mass, nonsp...
Einstein's Theory of General Relativity has proven remarkably successful at modelling a wide range o...
The numerical evolution of Einstein's field equations in a generic background has the potential to a...