We present the first numerical relativity waveforms for binary black hole mergers produced using spectral methods that show both the displacement and the spin memory effects. Explicitly, we use the SXS (Simulating eXtreme Spacetimes) Collaboration’s SpEC code to run a Cauchy evolution of a binary black hole merger and then extract the gravitational wave strain using SpECTRE’s version of a Cauchy-characteristic extraction. We find that we can accurately resolve the strain’s traditional m=0 memory modes and some of the m≠0 oscillatory memory modes that have previously only been theorized. We also perform a separate calculation of the memory using equations for the Bondi-Metzner-Sachs charges as well as the energy and angular momentum fluxes a...
Some astrophysical sources of gravitational waves can produce a memory effect, which causes a perm...
The Bondi-van der Burg-Metzner-Sachs (BMS) group, which uniquely describes the symmetries of asympto...
The detection of gravitational waves from binary black hole and binary neutron star mergers has ushe...
We present the first numerical relativity waveforms for binary black hole mergers produced using spe...
In addition to the dominant oscillatory gravitational wave signals produced during binary inspirals,...
Gravitational waves are oscillations in spacetime that propagate throughout the universe at the spee...
Gravitational waves are oscillations in spacetime that propagate throughout the universe at the spee...
Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (f...
Understanding the Bondi-Metzner-Sachs (BMS) frame of the gravitational waves produced by numerical r...
Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (f...
Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (f...
It may soon be possible for Advanced LIGO to detect hundreds of binary black hole mergers per year. ...
Some astrophysical sources of gravitational waves can produce a “memory effect, ” which causes a per...
The detection of gravitational waves from binary black hole and binary neutron star mergers has ushe...
In addition to the dominant oscillatory gravitational wave signals produced during binary inspirals,...
Some astrophysical sources of gravitational waves can produce a memory effect, which causes a perm...
The Bondi-van der Burg-Metzner-Sachs (BMS) group, which uniquely describes the symmetries of asympto...
The detection of gravitational waves from binary black hole and binary neutron star mergers has ushe...
We present the first numerical relativity waveforms for binary black hole mergers produced using spe...
In addition to the dominant oscillatory gravitational wave signals produced during binary inspirals,...
Gravitational waves are oscillations in spacetime that propagate throughout the universe at the spee...
Gravitational waves are oscillations in spacetime that propagate throughout the universe at the spee...
Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (f...
Understanding the Bondi-Metzner-Sachs (BMS) frame of the gravitational waves produced by numerical r...
Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (f...
Gravitational-wave memory refers to the permanent displacement of the test masses in an idealized (f...
It may soon be possible for Advanced LIGO to detect hundreds of binary black hole mergers per year. ...
Some astrophysical sources of gravitational waves can produce a “memory effect, ” which causes a per...
The detection of gravitational waves from binary black hole and binary neutron star mergers has ushe...
In addition to the dominant oscillatory gravitational wave signals produced during binary inspirals,...
Some astrophysical sources of gravitational waves can produce a memory effect, which causes a perm...
The Bondi-van der Burg-Metzner-Sachs (BMS) group, which uniquely describes the symmetries of asympto...
The detection of gravitational waves from binary black hole and binary neutron star mergers has ushe...