Gravitational memory in binary black hole mergers
arXiv:1004.4209 · doi:10.1088/2041-8205/732/1/L13
Abstract
In addition to the dominant oscillatory gravitational wave signals produced during binary inspirals, a non-oscillatory component arises from the nonlinear "memory" effect, sourced by the emitted gravitational radiation. The memory grows significantly during the late inspiral and merger, modifying the signal by an almost step-function profile, and making it difficult to model by approximate methods. We use numerical evolutions of binary black holes to evaluate the nonlinear memory during late-inspiral, merger and ringdown. We identify two main components of the signal: the monotonically growing portion corresponding to the memory, and an oscillatory part which sets in roughly at the time of merger and is due to the black hole ringdown. Counter-intuitively, the ringdown is most prominent for models with the lowest total spin. Thus, the case of maximally spinning black holes anti-aligned to the orbital angular momentum exhibits the highest signal-to-noise (SNR) for interferometric detectors. The largest memory offset, however, occurs for highly spinning black holes, with an estimated value of h^tot_20 \approx 0.24 in the maximally spinning case. These results are central to determining the detectability of nonlinear memory through pulsar timing array measurements.
Updated citations.
References in corpus (15)
- The international pulsar timing array project: using pulsars as a gravitational wave detector
- The North American Nanohertz Observatory for Gravitational Waves
- The gravitational-wave memory effect
- Dual black holes in merger remnants. II: spin evolution and gravitational recoil
- Geometry and Regularity of Moving Punctures
- High accuracy binary black hole simulations with an extended wave zone
- Nonlinear gravitational-wave memory from binary black hole mergers
- Characteristic extraction in numerical relativity: binary black hole merger waveforms at null infinity
- Matched Filtering of Numerical Relativity Templates of Spinning Binary Black Holes
- Search for Memory and Inspiral Gravitational Waves from Super-Massive Binary Black Holes with Pulsar Timing Arrays
- Observing gravitational wave bursts in pulsar timing measurements
- The Parkes Pulsar Timing Array
- LISA observations of massive black hole mergers: event rates and issues in waveform modelling
- The Asymptotic Falloff of Local Waveform Measurements in Numerical Relativity
- The Square Kilometre Array
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- Assessing Pulsar Timing Array Sensitivity to Gravitational Wave Bursts with Memory
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- A Review of Gravitational Memory and BMS Frame Fixing in Numerical Relativity
- Can gravitational-wave memory help constrain binary black-hole parameters? A LISA case study
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- High accuracy post-Newtonian and numerical relativity comparisons involving higher modes for eccentric binary black holes and a dominant mode eccentric inspiral-merger-ringdown model
- Inferring fundamental spacetime symmetries with gravitational-wave memory: from LISA to the Einstein Telescope
- A simple estimate of gravitational wave memory in binary black hole systems
- Challenges and Opportunities of Gravitational Wave Searches above 10 kHz
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- Pulsar Timing Perturbations from Galactic Gravitational Wave Bursts with Memory
- The affine-null metric formulation of Einstein's equations
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- Accurate calculation of gravitational wave memory
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- Gravitational memory meets astrophysical environments: exploring a new frontier through osculations
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