Frequency domain model of -mode dynamic tides in gravitational waveforms from compact binary inspirals
arXiv:1905.00818 · doi:10.1103/PhysRevD.100.021501
Abstract
The recent detection of gravitational waves (GWs) from the neutron star binary inspiral GW170817 has opened a unique avenue to probe matter and fundamental interactions in previously unexplored regimes. Extracting information on neutron star matter from the observed GWs requires robust and computationally efficient theoretical waveform models. We develop an approximate frequency-domain GW phase model of a main GW signature of matter: dynamic tides associated with the neutron stars' fundamental oscillation modes (-modes). We focus on nonspinning objects on circular orbits and demonstrate that, despite its mathematical simplicity, the new "-mode tidal" (fmtidal) model is in good agreement with the effective-one-body dynamical tides model up to GW frequencies of kHz and gives physical meaning to part of the phenomenology captured in tidal models tuned to numerical-relativity. The advantages of the fmtidal model are that it makes explicit the dependence of the GW phasing on the characteristic equation-of-state parameters, i.e., tidal deformabilities and -mode frequencies; it is computationally efficient; and it can readily be added to any frequency-domain baseline waveform. The fmtidal model is easily amenable to future improvements and provides the means for a first step towards independently measuring additional fundamental properties of neutron star matter beyond the tidal deformability as well as performing novel tests of general relativity from GW observations.
7 pages, 3 figures; matches published version
References in corpus (14)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Tidal Love numbers of neutron stars
- Constraining neutron star tidal Love numbers with gravitational wave detectors
- Relativistic theory of tidal Love numbers
- An improved effective-one-body model of spinning, nonprecessing binary black holes for the era of gravitational-wave astrophysics with advanced detectors
- Post-1-Newtonian tidal effects in the gravitational waveform from binary inspirals
- Phenomenological template family for black-hole coalescence waveforms
- Dynamical Tides in General Relativity: Effective Action and Effective-One-Body Hamiltonian
- Modeling the dynamics of tidally-interacting binary neutron stars up to merger
- The physics of neutron stars
- Gravitational self-force corrections to two-body tidal interactions and the effective one-body formalism
- Multipolar universal relations between f-mode frequency and tidal deformability of compact stars
- Gravitational waves from f-modes excited by the inspiral of highly eccentric neutron star binaries
- The phenomenology of dynamical neutron star tides
Cited by in corpus (53)
- New Horizons for Fundamental Physics with LISA
- Neutron star tidal deformability and equation of state constraints
- Gravitational waves from neutron star mergers and their relation to the nuclear equation of state
- Interpreting Binary Neutron Star Mergers: Describing the Binary Neutron Star Dynamics, Modelling Gravitational Waveforms, and Analyzing Detections
- The Science of the Einstein Telescope
- Gravitational-Wave Asteroseismology with Fundamental Modes from Compact Binary Inspirals
- Spin effects on neutron star fundamental-mode dynamical tides: phenomenology and comparison to numerical simulations
- General relativistic treatment of -mode oscillations of hyperonic stars
- Modeling the postmerger gravitational wave signal and extracting binary properties from future binary neutron star detections
- Universal Relations for Neutron Star F-Mode and G-Mode Oscillations
- Empirical relations for gravitational-wave asteroseismology of binary neutron star mergers
- Impact of Dynamical Tides on the Reconstruction of the Neutron Star Equation of State
- Uncertainty limits on neutron star radius measurements with gravitational waves
- New and Robust Gravitational-Waveform Model for High-Mass-Ratio Binary Neutron Star Systems with Dynamical Tidal Effects
- Impact of the equation of state on - and - mode oscillations of neutron stars
- Gravitomagnetic tidal resonance in neutron-star binary inspirals
- Probing the equation of state of neutron star matter with gravitational waves from binary inspirals in light of GW170817: a brief review
- The sum of Love: Exploring the effective tidal deformability of neutron stars
- Frequency deviations in universal relations of isolated neutron stars and postmerger remnants
- Improved post-Newtonian waveform model for inspiralling precessing-eccentric compact binaries
- General-relativistic treatment of tidal -mode resonances in coalescing binaries of neutron stars. I. Theoretical framework and crust breaking
- Probing internal dissipative processes of neutron stars with gravitational waves during the inspiral of neutron star binaries
- Neutron stars and the dense matter equation of state: from microscopic theory to macroscopic observations
- Excitation of f-modes during mergers of spinning binary neutron star
- Tidal deformations of hybrid stars with sharp phase transitions and elastic crusts
- General relativistic dynamical tides in binary inspirals, without modes
- Resonant tides in binary neutron star mergers: analytical-numerical relativity study
- Constraining equation of state groups from -mode asteroseismology
- Constraining properties of asymmetric dark matter candidates from gravitational-wave observations
- Stability and gravitational collapse of neutron stars with realistic equations of state
- Renormalizing Love: tidal effects at the third post-Newtonian order
- Combining effective-one-body accuracy and reduced-order-quadrature speed for binary neutron star merger parameter estimation with machine learning
- Impact of updated Multipole Love numbers and f-Love Universal Relations in the context of Binary Neutron Stars
- Detecting resonant tidal excitations of Rossby modes in coalescing neutron-star binaries with third-generation gravitational-wave detectors
- Gravitoelectric dynamical tides at second post-Newtonian order
- The I-Love-Q Relations for Superfluid Neutron Stars
- -mode Imprints in Gravitational Waves from Coalescing Binaries involving Aligned Spinning Neutron Stars
- Rotating Love: The dynamical tides of spinning Newtonian stars
- Cost of inferred nuclear parameters towards the f-mode dynamical tide in binary neutron stars
- Fully general relativistic simulations of rapidly rotating quark stars: Oscillation modes and universal relations
- Phenomenological model of gravitational self-force enhanced tides in inspiralling binary neutron stars
- Oscillations and tidal deformations of crystallized white dwarfs
- Modeling matter(s) in SEOBNRv5THM: Generating fast and accurate effective-one-body waveforms for spin-aligned binary neutron stars
- Observability of dynamical tides in merging eccentric neutron star binaries
- Hamilton-Jacobi hydrodynamics of pulsating relativistic stars
- Black-Hole Perturbation Plus Post-Newtonian Theory: Hybrid Waveform for Neutron Star Binaries
- -mode oscillations of compact stars with realistic equations of state in dynamical spacetime
- Astrophysical constraints on neutron star -modes with a nonparametric equation of state representation
- Influence of cosmic expansion on gravitational waveforms
- Prospects for distinguishing dynamical tides in inspiralling binary neutron stars with third generation gravitational-wave detectors
- Impact of three-nucleon forces on gravitational wave emission from neutron stars
- Gravitational-wave asteroseismology with f-modes from neutron star binaries at the merger phase
- I-Love-Q Relations of Fermion-Boson Stars