Impact of updated Multipole Love numbers and f-Love Universal Relations in the context of Binary Neutron Stars
arXiv:2210.09425 · doi:10.1103/PhysRevD.107.023010
Abstract
Neutron star (NS) equation of state (EoS) insensitive relations or universal relations (UR) involving neutron star bulk properties play a crucial role in gravitational-wave astronomy. Considering a wide range of equations of state originating from (i) phenomenological relativistic mean field models, (ii) realistic EoS models based on different physical motivations, and (iii) polytropic EoSs described by spectral decomposition method, we update the EoS-insensitive relations involving NS tidal deformability (Multipole Love relation) and the UR between f-mode frequency and tidal deformability (f-Love relation). We analyze the binary neutron star (BNS) event GW170817 using the frequency domain TaylorF2 waveform model with updated universal relations and find that the additional contribution of the octupolar electric tidal parameter and quadrupolar magnetic tidal parameter or the change of multipole Love relation has no significant impact on the inferred NS properties. However, adding the f-mode dynamical phase lowers the 90% upper bound on by 16-20% as well as lowers the upper bound of NSs radii by 500m. The combined URs (multipole Love and f-Love) developed in this work predict a higher median (also a higher 90% upper bound) for by 6% and also predict higher radii for the binary components of GW170817 by 200-300m compared to the URs used previously in the literature. We further perform injection and recovery studies on simulated events with different EoSs in detector configuration as well as with third generation (3G) Einstein telescope. In agreement with the literature, we find that neglecting f-mode dynamical tides can significantly bias the inferred NS properties, especially for low mass NSs. However, we also find that the impact of the URs is within statistical errors.
21 pages,10 figures
References in corpus (43)
- The NumPy array: a structure for efficient numerical computation
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- A Massive Pulsar in a Compact Relativistic Binary
- Multi-messenger Observations of a Binary Neutron Star Merger
- PSR J0030+0451 Mass and Radius from NICER Data and Implications for the Properties of Neutron Star Matter
- A NICER View of PSR J0030+0451: Millisecond Pulsar Parameter Estimation
- Tidal Love numbers of neutron stars
- A NICER View of the Massive Pulsar PSR J0740+6620 Informed by Radio Timing and XMM-Newton Spectroscopy
- Constraints on a phenomenologically parameterized neutron-star equation of state
- The Skyrme Interaction in finite nuclei and nuclear matter
- Neutron Star Extreme Matter Observatory: A kilohertz-band gravitational-wave detector in the global network
- Spectral Representations of Neutron-Star Equations of State
- Nuclear equation of state for core-collapse supernova simulations with realistic nuclear forces
- Equation of state and thickness of the inner crust of neutron stars
- PESummary: the code agnostic Parameter Estimation Summary page builder
- Multipolar universal relations between f-mode frequency and tidal deformability of compact stars
- Inferring neutron star properties from GW170817 with universal relations
- Constraining the onset density of the hadron-quark phase transition with gravitational-wave observations
- Towards mitigation of apparent tension between nuclear physics and astrophysical observations by improved modeling of neutron star matter
- Tidal effects in the gravitational-wave phase evolution of compact binary systems to next-to-next-to-leading post-Newtonian order
- Nonlinear-in-spin effects in effective-one-body waveform models of spin-aligned, inspiralling, neutron star binaries
- Spin effects on neutron star fundamental-mode dynamical tides: phenomenology and comparison to numerical simulations
- Implications of NICER for neutron star matter: the QHC21 equation of state
- Using gravitational-wave data to constrain dynamical tides in neutron star binaries
- General relativistic treatment of -mode oscillations of hyperonic stars
- Unified weak/strong coupling framework for nuclear matter and neutron stars
- Impact of Dynamical Tides on the Reconstruction of the Neutron Star Equation of State
- Effect of hyperons on f-mode oscillations in Neutron Stars
- GW170817 implications on the frequency and damping time of f-mode oscillations of neutron stars
- Impact of the equation of state on - and - mode oscillations of neutron stars
- Impacts of dark matter on the -mode oscillation of hyperon star
- Multi-physics constraints at different densities to probe nuclear symmetry energy in hyperonic neutron stars
- Updated universal relations for tidal deformabilities of neutron stars from phenomenological equations of state
- Nonperturbative quark matter equations of state with vector interactions
- Love relation for an anisotropic neutron star
- Fast, faithful, frequency-domain effective-one-body waveforms for compact binary coalescences
- Excitation of f-modes during mergers of spinning binary neutron star
- Constraining neutron star properties with a new equation of state insensitive approach
- -mode Imprints in Gravitational Waves from Coalescing Binaries involving Aligned Spinning Neutron Stars
- Systematic errors due to quasi-universal relations in binary neutron stars and their correction for unbiased model selection
- High-Order Multipole and Binary Love Number Universal Relations
- Role of dense matter in tidal deformations of inspiralling neutron stars and in gravitational waveform with unified equations of state
- Can a binary neutron star merger in the vicinity of a supermassive black hole enable a detection of a post-merger gravitational wave signal?
Cited by in corpus (17)
- Effects of Dark Matter on -mode oscillations of Neutron Stars
- Renormalizing Love: tidal effects at the third post-Newtonian order
- Constraining nuclear parameters using Gravitational waves from f-mode Oscillations in Neutron Stars
- Gravitoelectric dynamical tides at second post-Newtonian order
- Probing hadron-quark phase transition in twin stars using -modes
- Universal relations for compact stars with exotic degrees of freedom
- Multipole tidal effects in the post-Newtonian gravitational-wave phase of compact binary coalescences
- Cost of inferred nuclear parameters towards the f-mode dynamical tide in binary neutron stars
- Radiating Love: adiabatic tidal fluxes and modes up to next-to-next-to-leading post-Newtonian order
- Quasi-universal relations in the context of future neutron star detections
- Investigating the role of nuclear parameters on oscillation modes in hot Neutron Stars
- Constraining the Surface Curvature of an Anisotropic Neutron Star
- Constraining the -mode oscillations frequency in Neutron Stars through Universal Relations in the realm of Energy-Momentum Squared Gravity
- Detectability of Massive Boson Stars using Gravitational Waves from Fundamental Oscillations
- Universal relations between the quasinormal modes of neutron stars and magnetic tidal deformability
- Impact of Higher-order Tidal Corrections on the Measurement Accuracy of Neutron Star Tidal Deformability
- Universal relation between dipole polarizability of finite nuclei and neutron-star compactness