Modelling pulsar glitches: the hydrodynamics of superfluid vortex avalanches in neutron stars
arXiv:1801.01413 · doi:10.1017/pasa.2018.12
Abstract
The dynamics of quantised vorticity in neutron star interiors is at the heart of most pulsar glitch models. However, the large number of vortices (up to ) involved in a glitch and the huge disparity in scales between the femtometer scale of vortex cores and the kilometre scale of the star makes quantum dynamical simulations of the problem computationally intractable. In this paper we take a first step towards developing a mean field prescription to include the dynamics of vortices in large scale hydrodynamical simulations of superfluid neutron stars. We consider a one dimensional setup and show that vortex accumulation and differential rotation in the neutron superfluid lead to propagating waves, or `avalanches', as solutions for the equations of motion for the superfluid velocities. We introduce an additional variable, the fraction of free vortices, and test different prescriptions for its advection with the superfluid flow. We find that the new terms lead to solutions with a linear component in the rise of a glitch, and that, in specific setups, they can give rise to glitch precursors and even to decreases in frequency, or `anti-glitches'.
Revised version, published in PASA
References in corpus (11)
- Models of Pulsar Glitches
- Avalanche dynamics of radio pulsar glitches
- Predicting the Starquakes in PSR J0537-6910
- Pulsar spin-down: the glitch-dominated rotation of PSR J0537-6910
- Superfluid Density of Neutrons in the Inner Crust of Neutron Stars: New Life for Pulsar Glitch Models
- Entrainment in Superfluid Neutron Star Crusts: Hydrodynamic Description and Microscopic Origin
- Nonlinear interglitch dynamics, the braking index of the Vela pulsar and the time to the next glitch
- The glitches and rotational history of the highly energetic young pulsar PSR J05376910
- Anti-glitches within the standard scenario of pulsar glitches
- The effect of superfluid hydrodynamics on pulsar glitch sizes and waiting times
- Short-period pulsar oscillations following a glitch
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