Impact of unmodeled eccentricity on the tidal deformability measurement and implications for gravitational wave physics inference
arXiv:2403.02404 · doi:10.1103/PhysRevD.110.024002
Abstract
With the expected large number of binary neutron star (BNS) observations through gravitational waves (GWs), third-generation GW detectors, Cosmic Explorer (CE) and Einstein Telescope (ET), will be able to constrain the tidal deformability, and hence the equation of state (EoS) of neutron star (NS) with exquisite precision. A subset of the detected BNS systems can retain residual eccentricity in the detector frequency band. We study the systematic errors due to unmodeled eccentricity in the tidal deformability measurement and its implications for NS EoS and redshift measurement via the Love siren method. We find that the systematic errors in the tidal deformability parameter exceed the statistical errors at an eccentricity of () at Hz reference GW frequency for CE (ET). We show that these biases on tidal deformability parameter can significantly bias the NS EoS inference. Furthermore, the error on tidal deformability propagates to the source frame NS mass, which in turn biases the redshift inference. For CE, the redshift inference is significantly biased at an eccentricity of (at a reference frequency of Hz). We also study the implications of biased tidal deformability in testing the Kerr nature of black holes. Systematic error on the tidal deformability parameter leads to a non-zero value of tidal deformability for binary black holes, indicating a false deviation from the Kerr nature. Finally, we show that including eccentricity in the waveform model increases the statistical errors in tidal deformability measurement by a factor of . Our study, therefore, highlights the importance of using accurate eccentric waveform models for GW parameter inference.
13 pages, 4 figures. Matches published version
References in corpus (44)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Advanced Virgo: a 2nd generation interferometric gravitational wave detector
- Advanced LIGO
- A NICER View of PSR J0030+0451: Millisecond Pulsar Parameter Estimation
- Tidal Love numbers of neutron stars
- Constraining neutron star tidal Love numbers with gravitational wave detectors
- Exploring the Sensitivity of Next Generation Gravitational Wave Detectors
- A gravitational-wave standard siren measurement of the Hubble constant
- Relativistic theory of tidal Love numbers
- Comparison of post-Newtonian templates for compact binary inspiral signals in gravitational-wave detectors
- Gravitational waves from scattering of stellar-mass black holes in galactic nuclei
- Astrophysical Measurement of the Equation of State of Neutron Star Matter
- Post-1-Newtonian tidal effects in the gravitational waveform from binary inspirals
- Dynamics of stellar black holes in young star clusters with different metallicities - II. Black hole-black hole binaries
- Precision of Hubble constant derived using black hole binary absolute distances and statistical redshift information
- No-hair theorem for Black Holes in Astrophysical Environments
- LISA detections of massive black hole inspirals: parameter extraction errors due to inaccurate template waveforms
- Cosmology with the lights off: Standard sirens in the Einstein Telescope era
- On the Rate of Neutron Star Binary Mergers from Globular Clusters
- Gravitational-wave phasing for low-eccentricity inspiralling compact binaries to 3PN order
- Spectral sirens: cosmology from the full mass distribution of compact binaries
- Tidal deformability and I-Love-Q relations for gravastars with polytropic thin shells
- Observing complete gravitational wave signals from dynamical capture binaries
- Constraining the orbital eccentricity of inspiralling compact binary systems with Advanced LIGO
- A pulsar in a binary with a compact object in the mass gap between neutron stars and black holes
- Gravitational-Wave Phasing of Quasi-Circular Compact Binary Systems to the Fourth-and-a-Half post-Newtonian Order
- The Hitchhiker's guide to the galaxy catalog approach for gravitational wave cosmology
- Measuring the eccentricity of GW170817 and GW190425
- Systematic bias on parameterized tests of general relativity due to neglect of orbital eccentricity
- Impact of eccentricity on the gravitational wave searches for binary black holes: High mass case
- Non-linearities in the tidal Love numbers of black holes
- Systematic bias on the inspiral-merger-ringdown consistency test due to neglect of orbital eccentricity
- Simultaneous Inference of Neutron Star Equation of State and the Hubble Constant with a Population of Merging Neutron Stars
- Nuclear physics constraints from binary neutron star mergers in the Einstein Telescope era
- Relativistic theory of surficial Love numbers
- Eccentric black hole mergers via three-body interactions in young, globular, and nuclear star clusters
- Blind spots and biases: the dangers of ignoring eccentricity in gravitational-wave signals from binary black holes
- Return of the TEDI: revisiting the Triple Evolution Dynamical Instability channel in triple stars
- Eccentricity-induced systematic error on parametrized tests of general relativity: Hierarchical Bayesian inference applied to a binary black hole population
- Resolving the eccentricity of stellar mass binary black holes with next generation ground-based gravitational wave detectors
- Systematic bias due to eccentricity in parameter estimation for merging binary neutron stars
- Constraining neutron star properties with a new equation of state insensitive approach
- Precessing Binary Black Holes as Better Dark Sirens
- Measurability of neutron star tidal deformability from merging neutron star-black hole binaries
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- Possible Causes of False General Relativity Violations in Gravitational Wave Observations
- Evidence for eccentricity in the population of binary black holes observed by LIGO-Virgo-KAGRA
- Defining eccentricity for spin-precessing binaries
- A geometric template bank for the detection of spinning low-mass compact binaries with moderate orbital eccentricity
- Parametrized tests of general relativity using eccentric compact binaries
- Phenomenological model of gravitational self-force enhanced tides in inspiralling binary neutron stars
- Systematic bias due to eccentricity in parameter estimation for merging binary neutron stars : Spinning case