Gravitational waves from f-modes excited by the inspiral of highly eccentric neutron star binaries
arXiv:1612.07097 · doi:10.3847/1538-4357/aa5ebb
Abstract
As gravitational wave instrumentation becomes more sensitive, it is interesting to speculate about subtle effects that could be analyzed using upcoming generations of detectors. One such effect that has great potential for revealing the properties of very dense matter is fluid oscillations of neutron stars. These have been found in numerical simulations of the hypermassive remnants of double neutron star mergers and of highly eccentric neutron star orbits. Here we focus on the latter and sketch out some ideas for the production, gravitational-wave detection, and analysis of neutron star oscillations. These events will be rare (perhaps up to several tens per year could be detected using third-generation detectors such as the Einstein Telescope or the Cosmic Explorer), but they would have unique diagnostic power for the analysis of cold, catalyzed, dense matter. Furthermore, these systems are unusual in that analysis of the tidally excited f-modes of the stars could yield simultaneous measurements of their masses, moments of inertia, and tidal Love numbers, using the frequency, damping time, and amplitude of the modes. They would thus present a nearly unique opportunity to test observationally the I-Love-Q relation. The analysis of such events will require significant further work in nuclear physics and general relativistic nonlinear mode coupling, and thus we discuss further directions that will need to be pursued. For example, we note that for nearly-grazing encounters, numerical simulations show that the energy delivered to the f-modes may be up to two orders of magnitude greater than predicted in the linear theory.
16 pages, 1 figure; minor revisions and improved fig. 1, accepted for publication in ApJ
References in corpus (19)
- A Massive Pulsar in a Compact Relativistic Binary
- 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
- Gravitational waves from scattering of stellar-mass black holes in galactic nuclei
- Calibration of Moving Puncture Simulations
- Dynamical Tides in General Relativity: Effective Action and Effective-One-Body Hamiltonian
- Spectral properties of the post-merger gravitational-wave signal from binary neutron stars
- Determination of Dark Energy by the Einstein Telescope: Comparing with CMB, BAO and SNIa Observations
- Modeling the dynamics of tidally-interacting binary neutron stars up to merger
- Upper limits on the rates of binary neutron star and neutron-star--black-hole mergers from Advanced LIGO's first observing run
- Tidal effects in binary neutron star coalescence
- Revealing the high-density equation of state through binary neutron star mergers
- Parameter estimation for binary neutron-star coalescences with realistic noise during the Advanced LIGO era
- Analytic modelling of tidal effects in the relativistic inspiral of binary neutron stars
- Detection Rate Estimates of Gravity-waves Emitted During Parabolic Encounters of Stellar Black Holes in Globular Clusters
- Fundamental oscillation modes of neutron stars: validity of universal relations
- Gravitational Waves from Nonlinear Couplings of Radial and Polar Nonradial Modes in Relativistic Stars
- Detecting gravitational waves from highly eccentric compact binaries
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- Neutron star tidal deformability and equation of state constraints
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- Interpreting Binary Neutron Star Mergers: Describing the Binary Neutron Star Dynamics, Modelling Gravitational Waveforms, and Analyzing Detections
- The Science of the Einstein Telescope
- Neutron star equation of state: QMF modeling and applications
- Spin effects on neutron star fundamental-mode dynamical tides: phenomenology and comparison to numerical simulations
- General relativistic treatment of -mode oscillations of hyperonic stars
- Equilibrium, radial stability and non-adiabatic gravitational collapse of anisotropic neutron stars
- Impact of Dynamical Tides on the Reconstruction of the Neutron Star Equation of State
- Asteroseismology: radial oscillations of neutron stars with realistic equation of state
- GW170817 implications on the frequency and damping time of f-mode oscillations of neutron stars
- Strangeness-changing Rates and Hyperonic Bulk Viscosity in Neutron Star Mergers
- Probing the equation of state of neutron star matter with gravitational waves from binary inspirals in light of GW170817: a brief review
- Radial Oscillations of Dark Matter admixed Neutron Stars
- Excitation of f-modes during mergers of spinning binary neutron star
- Tidal deformations of hybrid stars with sharp phase transitions and elastic crusts
- Neutron Star-Black Hole Mergers from Gravitational Wave Captures
- Beyond the linear tide: impact of the non-linear tidal response of neutron stars on gravitational waveforms from binary inspirals
- g-mode Oscillations in Neutron Stars with Hyperons
- Fast Rotating Neutron Stars: Oscillations and Instabilities
- Detecting resonant tidal excitations of Rossby modes in coalescing neutron-star binaries with third-generation gravitational-wave detectors
- Radial Oscillations in Neutron Stars with Delta Baryons
- Dynamical tides during the inspiral of rapidly spinning neutron stars: Solutions beyond mode resonance
- Probing neutron star structure via f-mode oscillations and damping in dynamical spacetime models
- Investigating the I-Love-Q and w-mode Universal Relations Using Piecewise Polytropes
- Exploring non-radial oscillation modes in dark matter admixed neutron stars
- Evolution of inspiralling neutron star binaries: effects of tidal interactions and orbital eccentricities
- Premerger phenomena in neutron-star binary coalescences
- Phenomenological model of gravitational self-force enhanced tides in inspiralling binary neutron stars
- Nonradial instabilities in anisotropic neutron stars
- Investigating the role of nuclear parameters on oscillation modes in hot Neutron Stars
- Probing the impact of Delta-Baryons on Nuclear Matter and Non-Radial Oscillations in Neutron Stars
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- Observability of dynamical tides in merging eccentric neutron star binaries
- Effect of Dark matter and -cut potential on radial and non-radial oscillation modes in neutron stars
- Radial Oscillations of the HESS J1731-347 Compact Object via the Karmarkar Condition in Gravity
- estimates for two neutron stars in LMXBs with possible r-mode frequencies detected
- Eccentricity as a signature of hierarchical subsolar-mass mergers in collapsar disks
- Gravitational-wave asteroseismology with f-modes from neutron star binaries at the merger phase