Nonradial oscillations of stratified neutron stars with solid crusts: Mode characterization and tidal resonances in coalescing binaries
arXiv:2509.00257 · doi:10.1103/nbk7-8kts
Abstract
Dynamical tides of neutron stars in the late stages of binary inspirals provide a viable probe into dense matter through gravitational waves, and potentially trigger electromagnetic precursors. We model the tidal response as a set of driven harmonic oscillators, where the natural frequencies are given by the quasinormal modes of a nonrotating neutron star. These modes are calculated in general relativity by applying linear perturbation theory to stellar models that include a solid crust and compositional stratification. For the mode spectrum, we find that the canonical interface mode associated with the crust-core boundary vanishes in stratified neutron stars and is replaced by compositional gravity modes with mixed gravity-interfacial character, driven primarily by strong buoyancy in the outer core. We also find that fluid modes such as the core gravity mode and the fundamental mode can penetrate the crust, and we establish a criterion for such penetration. Regarding the tidal interaction, we find that transfer of binding energy to oscillations is dominated by the fundamental mode despite its frequency being too high to resonate with the tidal forcing. In general, we find that lower-frequency modes induce gravitational-wave phase shifts smaller than for the equation of state we consider. We discover that nonresonant fundamental and crustal shear modes can trigger crust breaking already near the first gravity-mode resonance, while gravity-mode resonance concentrates strain at the base of the crust and may marginally crack it. These results suggest that both resonant and nonresonant excitations can overstress the crust and may channel energy into the magnetosphere prior to merger, potentially powering electromagnetic precursors. Our work represents an important step toward realistic modeling of dynamical tides of neutron stars in multimessenger observations.
28 pages, 21 figures, accepted by Phys. Rev. D, for associated derivation of the master equations, see https://gravyong.github.io/links/
References in corpus (70)
- GW170817: Observation of Gravitational Waves from a Binary Neutron Star Inspiral
- Shapiro delay measurement of a two solar mass neutron star
- 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
- Constraining neutron star tidal Love numbers with gravitational wave detectors
- Refined Mass and Geometric Measurements of the High-Mass PSR J0740+6620
- Observation of gravitational waves from two neutron star-black hole coalescences
- Further explorations of Skyrme-Hartree-Fock-Bogoliubov mass formulas. XII: Stiffness and stability of neutron-star matter
- The Breaking Strain of Neutron Star Crust and Gravitational Waves
- Binary Neutron Star Mergers: Dependence on the Nuclear Equation of State
- A nearby long gamma-ray burst from a merger of compact objects
- Dynamical Tides in General Relativity: Effective Action and Effective-One-Body Hamiltonian
- Neutron Star Asteroseismology. Axial Crust Oscillations in the Cowling Approximation
- An updated mass-radius analysis of the 2017-2018 NICER data set of PSR J0030+0451
- Inner crust of neutron stars with mass-fitted Skyrme functionals
- The Radius of the High-mass Pulsar PSR J0740+6620 with 3.6 yr of NICER Data
- Torsional Oscillations of Relativistic Stars with Dipole Magnetic Fields
- Revisiting the lower bound on tidal deformability derived by AT 2017gfo
- Constraints on Neutron Star Crusts From Oscillations in Giant Flares
- Resonant tidal excitation of superfluid neutron stars in coalescing binaries
- Spin effects on neutron star fundamental-mode dynamical tides: phenomenology and comparison to numerical simulations
- Using gravitational-wave data to constrain dynamical tides in neutron star binaries
- Universal Relations for Neutron Star F-Mode and G-Mode Oscillations
- Impact of Dynamical Tides on the Reconstruction of the Neutron Star Equation of State
- Oscillations of General Relativistic Multi-fluid/Multi-layer Compact Stars
- Waveform uncertainty quantification and interpretation for gravitational-wave astronomy
- Composition temperature-dependent g-modes in superfluid neutron stars
- Dynamical tides in coalescing superfluid neutron star binaries with hyperon cores and their detectability with third generation gravitational-wave detectors
- Unified neutron star EOSs and neutron star structures in RMF models
- Precursors of Short Gamma-Ray Bursts in the SPI-ACS/INTEGRAL Experiment
- Quasi-normal g-modes of neutron stars with quarks
- The Peculiar Precursor of a Gamma-Ray Burst from a Binary Merger Involving a Magnetar
- General-relativistic treatment of tidal -mode resonances in coalescing binaries of neutron stars. I. Theoretical framework and crust breaking
- Dynamical tides in neutron stars: The impact of the crust
- General relativistic dynamical tides in binary inspirals, without modes
- Constraining equation of state groups from -mode asteroseismology
- Probing hybrid stars with gravitational waves via interfacial modes
- Torsional oscillations of neutron stars in scalar-tensor theory of gravity
- Constraining Nuclear Symmetry Energy with Multi-messenger Resonant Shattering Flares
- Investigating tidal heating in neutron stars via gravitational Raman scattering
- Resonant Shattering Flares in Black Hole-Neutron Star and Binary Neutron Star Mergers
- Resonant Shattering Flares as Multimessenger Probes of the Nuclear Symmetry Energy
- Triaxially-deformed Freely-precessing Neutron Stars: Continuous electromagnetic and gravitational radiation
- Rotation and deformation of strangeon stars in the Lennard-Jones model
- General-relativistic treatment of tidal -mode resonances in coalescing binaries of neutron stars. II. As triggers for precursor flares of short gamma-ray bursts
- g-mode Oscillations in Neutron Stars with Hyperons
- Quasi-periodic oscillations in precursor flares via seismic aftershocks from resonant shattering
- Unified nuclear matter EOSs constrained by the in-medium balance in density-dependent covariant density functionals
- Tidal heating as a direct probe of strangeness inside neutron stars
- Probing phase transition in neutron stars via the crust-core interfacial mode
- Unified equations of state for cold non-accreting neutron stars with Brussels-Montreal functionals. IV. Role of the symmetry energy in pasta phases
- Resolving phase transition properties of dense matter through tidal-excited g-mode from inspiralling neutron stars
- New dynamical tide constraints from current and future gravitational wave detections of inspiralling neutron stars
- Interface modes in inspiralling neutron stars: A gravitational-wave probe of first-order phase transitions
- Neutron star g-modes in the relativistic Cowling approximation
- Shear and interface modes in neutron stars with pasta structures
- Precession of magnetars: dynamical evolutions and modulations on polarized electromagnetic waves
- Gravitational waves from neutron-star mountains
- Premerger phenomena in neutron-star binary coalescences
- Relativistic Elasticity II
- Tidal heating in binary inspiral of strange quark stars
- Measuring spin in coalescing binaries of neutron stars showing double precursors
- Nonlinear Alfvén-wave Dynamics and Premerger Emission from Crustal Oscillations in Neutron Star Mergers
- Effects of inner crusts on -mode oscillations in neutron stars
- -mode of neutron stars in pseudo-Newtonian gravity
- Suppression of composition -modes in chemically-equilibrating warm neutron stars
- Impact of the relativistic Cowling approximation on shear and interface modes of neutron stars