The final merger of two black holes will emit more energy than all the stars in the observable universe combined. This energy will come in the form of gravitational waves, which are a key prediction of Einstein's general relativity and a new tool for exploring the universe. Observing these mergers with gravitational wave detectors, such as the ground-based LIGO and the space-based LISA, requires knowledge of the radiation waveforms. Since these mergers take place in regions of extreme gravity, we need to solve Einstein's equations of general relativity on a computer. For more than 30 years, scientists have tried to compute black hole mergers using the methods of numerical relativity. The resulting computer codes were long plagued by instabi...
For several years numerical simulations have been revealing the details of general relativity's pred...
Gravitational waves deliver information in exquisite detail about astrophysical phenomena, among the...
The final merger of two massive black holes produces a powerful burst of gravitational radiation, em...
The final merger of two black holes is expected to be the strongest gravitational wave source for gr...
The final merger of two black holes releases a tremendous amount of energy and is one of the brighte...
The final merger of two black holes is expected to be the strongest source of gravitational waves fo...
The final merger of two black holes releases a tremendous amount of energy and is one of the brighte...
The merger of two black holes is one of the most extraordinary events in the natural world. Made of ...
The merger of two black holes is one of the most extraordinary events in the natural world. Made of ...
The merger of two black holes is one of the most extraordinary events in the natural world. Made of ...
Recent breakthroughs in the field of numerical relativity have led to dramatic progress in understan...
Massive black hole mergers are perhaps the most energetic astronomical events, establishing their im...
Black-hole mergers take place in regions of very strong and dynamical gravitational fields, and are ...
The merger of two black holes is one of the most extraordinary events in the natural world. Made of ...
The strongest expected sources of gravitational waves in the LISA band are the mergers of massive bl...
For several years numerical simulations have been revealing the details of general relativity's pred...
Gravitational waves deliver information in exquisite detail about astrophysical phenomena, among the...
The final merger of two massive black holes produces a powerful burst of gravitational radiation, em...
The final merger of two black holes is expected to be the strongest gravitational wave source for gr...
The final merger of two black holes releases a tremendous amount of energy and is one of the brighte...
The final merger of two black holes is expected to be the strongest source of gravitational waves fo...
The final merger of two black holes releases a tremendous amount of energy and is one of the brighte...
The merger of two black holes is one of the most extraordinary events in the natural world. Made of ...
The merger of two black holes is one of the most extraordinary events in the natural world. Made of ...
The merger of two black holes is one of the most extraordinary events in the natural world. Made of ...
Recent breakthroughs in the field of numerical relativity have led to dramatic progress in understan...
Massive black hole mergers are perhaps the most energetic astronomical events, establishing their im...
Black-hole mergers take place in regions of very strong and dynamical gravitational fields, and are ...
The merger of two black holes is one of the most extraordinary events in the natural world. Made of ...
The strongest expected sources of gravitational waves in the LISA band are the mergers of massive bl...
For several years numerical simulations have been revealing the details of general relativity's pred...
Gravitational waves deliver information in exquisite detail about astrophysical phenomena, among the...
The final merger of two massive black holes produces a powerful burst of gravitational radiation, em...