Numerical-relativity (NR) simulations of compact binaries are expected to be an invaluable tool in gravitational-wave (GW) astronomy. The sensitivity of future detectors such as the Einstein Telescope (ET) will place much higher demands on NR simulations than first- and second-generation ground-based detectors. We discuss the issues facing compact-object simulations over the next decade, with an emphasis on estimating where the accuracy and parameter space coverage will be sufficient for ET and where significant work is needed. <br/
Gravitational waves are one of the most exciting predictions of General Relativity. Due to their com...
Gravitational waves are one of the most exciting predictions of General Relativity. Due to their com...
This thesis will present the results of several projects that each represent a specific stage in the...
Numerical-relativity (NR) simulations of compact binaries are expected to be an invaluable tool in g...
Numerical-relativity (NR) simulations of compact binaries are expected to be an invaluable tool in g...
Numerical-relativity (NR) simulations of compact binaries are expected to be an invaluable tool in g...
Numerical-relativity (NR) simulations of compact binaries are expected to be an invaluable tool in g...
Numerical-relativity (NR) simulations of compact binaries are expected to be an invaluable tool in g...
Gravitational wave observations from merging compact objects are becoming commonplace, and as detect...
Numerical relativity is finally approaching a state where the evolution of rather general (3+1)-dime...
Models of gravitational waveforms from coalescing black-hole binaries play a crucial role in the eff...
We present the first numerical-relativity simulation of a compact-object binary whose gravitational ...
Activities in data analysis and numerical simulation of gravitational waves have to date largely pro...
The focus of this thesis is the use of numerical simulations of black hole spacetimes in gravitation...
We are entering an era where the numerical construction of generic spacetimes is becoming a reality....
Gravitational waves are one of the most exciting predictions of General Relativity. Due to their com...
Gravitational waves are one of the most exciting predictions of General Relativity. Due to their com...
This thesis will present the results of several projects that each represent a specific stage in the...
Numerical-relativity (NR) simulations of compact binaries are expected to be an invaluable tool in g...
Numerical-relativity (NR) simulations of compact binaries are expected to be an invaluable tool in g...
Numerical-relativity (NR) simulations of compact binaries are expected to be an invaluable tool in g...
Numerical-relativity (NR) simulations of compact binaries are expected to be an invaluable tool in g...
Numerical-relativity (NR) simulations of compact binaries are expected to be an invaluable tool in g...
Gravitational wave observations from merging compact objects are becoming commonplace, and as detect...
Numerical relativity is finally approaching a state where the evolution of rather general (3+1)-dime...
Models of gravitational waveforms from coalescing black-hole binaries play a crucial role in the eff...
We present the first numerical-relativity simulation of a compact-object binary whose gravitational ...
Activities in data analysis and numerical simulation of gravitational waves have to date largely pro...
The focus of this thesis is the use of numerical simulations of black hole spacetimes in gravitation...
We are entering an era where the numerical construction of generic spacetimes is becoming a reality....
Gravitational waves are one of the most exciting predictions of General Relativity. Due to their com...
Gravitational waves are one of the most exciting predictions of General Relativity. Due to their com...
This thesis will present the results of several projects that each represent a specific stage in the...