We review recent progress in the application of numerical relativity techniques to astrophysics and high-energy physics. We focus on recent developments regarding the spin evolution in black hole binaries, high-energy black hole collisions, compact object solutions in scalar-tensor gravity, superradiant instabilities, hairy black hole solutions in Einstein's gravity coupled to fundamental fields, and the possibility to gain insight into these phenomena using analog gravity models
The nonlinear behavior of higher dimensional black hole spacetimes is of interest in several context...
The numerical relativity session at GR18 was dominated by physics results on binary black hole merge...
The first attempts at solving a binary black hole spacetime date back to the 1960s, with the pioneer...
We review recent progress in the application of numerical relativity techniques to astrophysics and ...
We review recent progress in the application of numerical relativity techniques to astrophysics and ...
We review recent progress in the application of numerical relativity techniques to astrophysics and ...
We review recent progress in the application of numerical relativity techniques to astrophysics and ...
We give a status report on our project targeted at performing numerical simulations of a head-on col...
The demand to obtain answers to highly complex problems within strong-field gravity has been met wit...
We give a status report on our project targeted at performing numerical simulations of a head-on col...
The demand to obtain answers to highly complex problems within strong-field gravity has been met wit...
Numerical relativity is finally approaching a state where the evolution of rather general (3+1)-dime...
We are entering an era where the numerical construction of generic spacetimes is becoming a reality....
I review recent developments in numerical relativity, focussing on progress made in 3D black hole ev...
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...
The numerical relativity session at GR18 was dominated by physics results on binary black hole merge...
The first attempts at solving a binary black hole spacetime date back to the 1960s, with the pioneer...
We review recent progress in the application of numerical relativity techniques to astrophysics and ...
We review recent progress in the application of numerical relativity techniques to astrophysics and ...
We review recent progress in the application of numerical relativity techniques to astrophysics and ...
We review recent progress in the application of numerical relativity techniques to astrophysics and ...
We give a status report on our project targeted at performing numerical simulations of a head-on col...
The demand to obtain answers to highly complex problems within strong-field gravity has been met wit...
We give a status report on our project targeted at performing numerical simulations of a head-on col...
The demand to obtain answers to highly complex problems within strong-field gravity has been met wit...
Numerical relativity is finally approaching a state where the evolution of rather general (3+1)-dime...
We are entering an era where the numerical construction of generic spacetimes is becoming a reality....
I review recent developments in numerical relativity, focussing on progress made in 3D black hole ev...
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...
The numerical relativity session at GR18 was dominated by physics results on binary black hole merge...
The first attempts at solving a binary black hole spacetime date back to the 1960s, with the pioneer...