Testing General Relativity with LISA including Spin Precession and Higher Harmonics in the Waveform
arXiv:1108.1826 · doi:10.1103/PhysRevD.86.084028
Abstract
We compute the accuracy at which a LISA-like space-based gravitational wave detector will be able to observe deviations from General Relativity in the low frequency approximation. To do so, we introduce six correction parameters that account for modified gravity in the second post-Newtonian gravitational wave phase for inspiralling supermassive black hole binaries with spin precession on quasi-circular orbits. Our implementation can be regarded as a subset of the ppE formalism developed by Yunes and Pretorius, being able to investigate also next-to-leading order effects. In order to find error distributions for the alternative theory parameters, we use the Fisher information formalism and carry out Monte Carlo simulations for 17 different binary black hole mass configurations in the range 10^5 Msun < M < 10^8 Msun with 10^3 randomly distributed points in the parameter space each, comparing the full (FWF) and restricted (RWF) version of the gravitational waveform. We find that the binaries can roughly be separated into two groups: one with low (< ~10^7 Msun) and one with high total masses (> ~10^7 Msun). The RWF errors on the alternative theory parameters are two orders of magnitude higher than the FWF errors for high-mass binaries while almost comparable for low-mass binaries. Due to dilution of the available information, the accuracy of the binary parameters is reduced by factors of a few, except for the luminosity distance which is affected more seriously in the high-mass regime. As an application and to compare our research with previous work, we compute an optimal lower bound on the graviton Compton wavelength which is increased by a factor of ~1.6 when using the FWF.
33 pages, 37 figures
References in corpus (11)
- Five-Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Cosmological Interpretation
- Use and Abuse of the Fisher Information Matrix in the Assessment of Gravitational-Wave Parameter-Estimation Prospects
- Low-frequency gravitational-wave science with eLISA/NGO
- Towards a generic test of the strong field dynamics of general relativity using compact binary coalescence
- Model-Independent Test of General Relativity: An Extended post-Einsteinian Framework with Complete Polarization Content
- Bounding the mass of the graviton with gravitational waves: Effect of spin precessions in massive black hole binaries
- Bounding the mass of the graviton with gravitational waves: Effect of higher harmonics in gravitational waveform templates
- A Bayesian Approach to the Detection Problem in Gravitational Wave Astronomy
- Binary Pulsar Constraints on the Parameterized post-Einsteinian Framework
- Constraining the mass of the graviton using coalescing black-hole binaries
- Parameter estimation for coalescing massive binary black holes with LISA using the full 2-post-Newtonian gravitational waveform and spin-orbit precession
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- Scientific Potential of DECIGO Pathfinder and Testing GR with Space-Borne Gravitational Wave Interferometers
- Mis-Modelling in Gravitational Wave Astronomy: The Trouble With Templates
- Tests of general relativity using multiband observations of intermediate mass binary black hole mergers
- Singular value decomposition in parametrised tests of post-Newtonian theory
- Parity violation in gravitational waves and observational bounds from third-generation detectors
- Supermassive Black Hole Tests of General Relativity with eLISA
- The imprint of gas on gravitational waves from LISA intermediate-mass black hole binaries