Astrophysical implications of double-layer torsional oscillations in a neutron star crust as a lasagna sandwich
arXiv:1906.06999 · doi:10.1093/mnras/stz2385
Abstract
In the crust of a neutron star, global torsional oscillations could occur in two elastic layers. The outer and inner layers are composed of spherical and cylindrical nuclei and of cylindrical holes (tubes) and spherical holes (bubbles), respectively, while between these two layers, a phase of slab-like (lasagna) nuclei with vanishingly small elasticity is sandwiched. In this work, we update systematic calculations of the eigenfrequencies of the fundamental oscillations in the inner layer by newly allowing for the presence of tubes. We find that the frequencies still depend strongly on the slope parameter of the nuclear symmetry energy, , while being almost independent of the incompressibility of symmetric nuclear matter. We also find that the fundamental frequencies in the inner layer can become smaller than those in the outer layer because the tube phase has a relatively small shear modulus and at the same time dominates the inner layer in thickness. As a result, we can successfully explain not only the quasi-periodic oscillations originally discovered in the observed X-ray afterglow of the giant flare of SGR 1806--20 but also many others recently found by a Bayesian procedure.
References in corpus (14)
- GW170817: Measurements of Neutron Star Radii and Equation of State
- Neutron conduction in the inner crust of a neutron star in the framework of the band theory of solids
- Neutron Star Asteroseismology. Axial Crust Oscillations in the Cowling Approximation
- Incompressibility in finite nuclei and nuclear matter
- The symmetry energy at subnuclear densities and nuclei in neutron star crusts
- Signatures of hadron-quark mixed phase in gravitational waves
- Probing the Equation of State of Nuclear Matter via Neutron Star Asteroseismology
- Constraints on Neutron Star Crusts From Oscillations in Giant Flares
- Quasi-Periodic Oscillations in Short Recurring Bursts of the magnetars SGR 1806-20 and SGR 1900+14 Observed With RXTE
- Constraints on the nuclear equation of state and the neutron star structure from crustal torsional oscillations
- Constraints on the symmetry energy from observational probes of the neutron star crust
- Probing nuclear bubble structure via neutron star asteroseismology
- Probing crustal structures from neutron star compactness
- Quasi-periodic oscillations in superfluid, relativistic magnetars with nuclear pasta phases
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