Improved analytic extreme-mass-ratio inspiral model for scoping out eLISA data analysis
arXiv:1510.06245 · doi:10.1088/0264-9381/32/23/232002
Abstract
The space-based gravitational-wave detector eLISA has been selected as the ESA L3 mission, and the mission design will be finalised by the end of this decade. To prepare for mission formulation over the next few years, several outstanding and urgent questions in data analysis will be addressed using mock data challenges, informed by instrument measurements from the LISA Pathfinder satellite launching at the end of 2015. These data challenges will require accurate and computationally affordable waveform models for anticipated sources such as the extreme-mass-ratio inspirals (EMRIs) of stellar-mass compact objects into massive black holes. Previous data challenges have made use of the well-known analytic EMRI waveforms of Barack and Cutler, which are extremely quick to generate but dephase relative to more accurate waveforms within hours, due to their mismatched radial, polar and azimuthal frequencies. In this paper, we describe an augmented Barack-Cutler model that uses a frequency map to the correct Kerr frequencies, along with updated evolution equations and a simple fit to a more accurate model. The augmented waveforms stay in phase for months and may be generated with virtually no additional computational cost.
8 pages, 2 figures, accepted for publication as Fast Track Communication in Classical and Quantum Gravity
References in corpus (4)
Cited by in corpus (50)
- Science with the space-based interferometer LISA. V: Extreme mass-ratio inspirals
- Self-force and radiation reaction in general relativity
- FastEMRIWaveforms: New tools for millihertz gravitational-wave data analysis
- Eccentric, nonspinning, inspiral, Gaussian-process merger approximant for the detection and characterization of eccentric binary black hole mergers
- Rapid generation of fully relativistic extreme-mass-ratio-inspiral waveform templates for LISA data analysis
- The Fast and the Fiducial: Augmented kludge waveforms for detecting extreme-mass-ratio inspirals
- Adiabatic waveforms for extreme mass-ratio inspirals via multivoice decomposition in time and frequency
- Characterization of the stochastic signal originating from compact binaries populations as measured by LISA
- Science with the TianQin observatory: Preliminary result on extreme-mass-ratio inspirals
- Wet Extreme Mass Ratio Inspirals May Be More Common For Spaceborne Gravitational Wave Detection
- A Surrogate Model for Gravitational Wave Signals from Comparable- to Large- Mass-Ratio Black Hole Binaries
- Gravitational wave background from extreme mass ratio inspirals
- Adiabatic waveforms from extreme-mass-ratio inspirals: an analytical approach
- Evolution of small-mass-ratio binaries with a spinning secondary
- Surrogate model for gravitational wave signals from non-spinning, comparable- to large-mass-ratio black hole binaries built on black hole perturbation theory waveforms calibrated to numerical relativity
- Taiji Data Challenge for Exploring Gravitational Wave Universe
- Detecting Gravitational-waves from Extreme Mass Ratio Inspirals using Convolutional Neural Networks
- Comparing second-order gravitational self-force and effective one body waveforms from inspiralling, quasi-circular and nonspinning black hole binaries II: the large-mass-ratio case
- Eccentric self-forced inspirals into a rotating black hole
- Non-local parameter degeneracy in the intrinsic space of gravitational-wave signals from extreme-mass-ratio inspirals
- Gravitational waves from eccentric extreme mass-ratio inspirals as probes of scalar fields
- Space-based gravitational wave signal detection and extraction with deep neural network
- On Detecting Equatorial Symmetry Breaking with LISA
- Towards a framework for testing general relativity with extreme-mass-ratio-inspiral observations
- Mass-gap extreme mass ratio inspirals
- 2 Fast 2 Fiducial: Gaussian processes for the interpolation and marginalization of waveform error in extreme-mass-ratio-inspiral parameter estimation
- The Gravitational Wave Universe Toolbox: A software package to simulate observation of the Gravitational Wave Universe with different detectors
- Black hole science with the Laser Interferometer Space Antenna
- Identification of Gravitational-waves from Extreme Mass Ratio Inspirals
- The gravitational capture of compact objects by massive black holes
- Fast inspirals and the treatment of orbital resonances
- Constraint on Brans-Dicke theory from intermediate/extreme mass ratio inspirals
- Recurrence Analysis as a tool to study chaotic dynamics of extreme mass ratio inspiral in signal with noise
- A one-stop function for gravitational-wave detection, identification and inference
- Dilated convolutional neural network for detecting extreme-mass-ratio inspirals
- Testing gravity with Extreme-Mass-Ratio Inspirals
- Dark Matter Signatures of Supermassive Black Hole Binaries
- Transition of EMRIs through resonance: corrections to higher order in the on-resonance flux modification
- Relativistic model of binary extreme-mass-ratio inspiral systems and their gravitational radiation
- Gravitational waves for eccentric extreme mass ratio inspirals of self-dual spacetime
- Augmented kludge waveforms and Gaussian process regression for EMRI data analysis
- EMRI_MC: A GPU-based Python code for Bayesian inference of EMRI waveforms
- Gravitational Burst Radiation from Pulsars in the Galactic centre and stellar clusters
- Assessing the systematic errors of extreme-mass-ratio inspirals waveforms for testing general relativity
- Extreme Mass-Ratio Binary Black Hole Merger: Characteristics of the Test-Particle Limit
- Probing the Growth of Massive Black Holes with Black Hole-Host Galaxy Spin Correlations
- Constraints on the Scale Parameter of Regular Black Hole in Asymptotically Safe Gravity from Extreme Mass Ratio Inspirals
- Shadow constraints of charged black hole with scalar hair and gravitational waves from extreme mass ratio inspirals
- Measurement of the central Galactic black hole by extremely large mass-ratio inspirals
- Gravitational Wave Signatures of Quasi-Periodic Eruptions: LISA Detection Prospects for RX J1301.9+2747