Bayesian estimate of the superfluid moments of inertia from the 2016 glitch in the Vela pulsar
arXiv:2005.01594 · doi:10.1051/0004-6361/202038340
Abstract
The observation of the first pulse-to-pulse glitch in the Vela pulsar opens a new window on the internal dynamics of neutron stars. We study the minimal three-component model for pulsar glitches by solving it with generic initial conditions. The purpose is to use this solution to fit the data of the 2016 Vela glitch by employing a Bayesian approach and to obtain a probability distribution for the physical parameters of the model and for observational parameters, such as the glitch rise time and the relaxation timescale. The fit is achieved through Bayesian inference. Due to the presence of an increase in the timing residuals near the glitch time, an extra magnetospheric component was added to the three-component model to deal with this phenomenon. A physically reasonable, non-informative prior was set on the parameters of the model, so that the posterior distribution could be compared with information obtained from microphysical calculations. By considering a model with a tightened prior on the moment of inertia fractions and by comparing it with the original model by means of Bayesian model selection, we studied the possibility of a crust-limited superfluid reservoir. We obtained the posterior distribution for the moment of inertia fractions of the superfluid components, the coupling parameters, and the initial velocity lags between the components. An analysis of the inferred posterior also confirmed the presence of an overshoot in that glitch and set an upper limit of s on the glitch rise timescale. The comparison between the two models with different priors on the moment of inertia fractions appears to indicate a need for a core participation in the glitch phenomenon, regardless of the uncertain strength of the entrainment coupling.
13 pages, 5 figures
References in corpus (15)
- Further explorations of Skyrme-Hartree-Fock-Bogoliubov mass formulas. XII: Stiffness and stability of neutron-star matter
- Models of Pulsar Glitches
- Neutron conduction in the inner crust of a neutron star in the framework of the band theory of solids
- Crustal Entrainment and Pulsar Glitches
- Superfluidity and Superconductivity in Neutron Stars
- Entrainment parameters in cold superfluid neutron star core
- Two decades of pulsar timing of Vela
- A Quake Quenching the Vela Pulsar
- Entrainment in Superfluid Neutron Star Crusts: Hydrodynamic Description and Microscopic Origin
- Global numerical simulations of the rise of vortex-mediated pulsar glitches in full general relativity
- Vortex pinning in the superfluid core of neutron stars and the rise of pulsar glitches
- The 2016 Vela glitch: a key to neutron star internal structure and dynamics
- A universal formula for the relativistic correction to the mutual friction coupling time-scale in neutron stars
- The effect of non-linear mutual friction on pulsar glitch sizes and rise times
- Flux-Vortex Pinning and Neutron Star Evolution
Cited by in corpus (14)
- The impact of glitches on young pulsar rotational evolution
- Can we decipher the composition of the core of a neutron star?
- Stochastic processes for pulsar timing noise: fluctuations in the internal and external torques
- New pulse profile variability associated with a glitch of PSR J0738-4042
- First results of the glitching pulsars monitoring program at the Argentine Institute of Radioastronomy
- Discovery of the first anti-glitch event in the rotation-powered pulsar PSR B0540-69
- Superfluid dynamics in neutron star crusts: the Iordanskii force and chemical gauge covariance
- Continuous gravitational wave emission from neutron stars with pinned superfluids in the core
- Statistical estimates of the pulsar glitch activity
- Anisotropic electron transport in the nuclear pasta phase
- Measuring the vortex-nucleus pinning force from pulsar glitch rates
- Effects of Nontrivial Topology on Neutron Star Rotation and its Potential Observational Implications
- The Jodrell Bank Glitch Catalogue: 106 new rotational glitches in 70 pulsars
- Measuring the crust-superfluid coupling time-scale for 105 UTMOST pulsars with a Kalman filter