Predicting the Starquakes in PSR J0537-6910
arXiv:astro-ph/0605007 · doi:10.1086/508736
Abstract
We report on more than 7 years of monitoring of PSR J0537-6910, the 16 ms pulsar in the Large Magellanic Cloud, using data acquired with the RXTE. During this campaign the pulsar experienced 23 sudden increases in frequency (``glitches'') amounting to a total gain of over six ppm of rotation frequency superposed on its gradual spindown of d(nu)/d(t) = -2e-10 Hz/s. The time interval from one glitch to the next obeys a strong linear correlation to the amplitude of the first glitch, with a mean slope of about 400 days ppm (6.5 days per uHz), such that these intervals can be predicted to within a few days, an accuracy which has never before been seen in any other pulsar. There appears to be an upper limit of ~40 uHz for the size of glitches in_all_ pulsars, with the 1999 April glitch of J0537 as the largest so far. The change in the spindown of J0537 across the glitches, Delta(d(nu)/d(t)), appears to have the same hard lower limit of -1.5e-13 Hz/s, as, again, that observed in all other pulsars. The spindown continues to increase in the long term, d(d(nu)/d(t))/d(t) = -1e-21 Hz/s/s, and thus the timing age of J0537 (-0.5 nu d(nu)/d(t)) continues to decrease at a rate of nearly one year every year, consistent with movement of its magnetic moment away from its rotational axis by one radian every 10,000 years, or about one meter per year. J0537 was likely to have been born as a nearly-aligned rotator spinning at 75-80 Hz, with a |d(nu)/d(t)| considerably smaller than its current value of 2e-10 Hz/s. The pulse profile of J0537 consists of a single pulse which is found to be flat at its peak for at least 0.02 cycles.
54 pages, 12 figures. Accepted for publication in The Astrophysical Journal. Cleaner figure 2. V4 -- in line with version accepted by ApJ
Cited by in corpus (57)
- Models of Pulsar Glitches
- Detection of 107 glitches in 36 southern pulsars
- Avalanche dynamics of radio pulsar glitches
- Searches for Continuous-Wave Gravitational Radiation
- New long-term braking index measurements for glitching pulsars using a glitch-template method
- Pulsar spin-down: the glitch-dominated rotation of PSR J0537-6910
- The soft gamma-ray pulsar population: an high-energy overview
- Magnetic field growth in young glitching pulsars with a braking index
- A hydrodynamical trigger mechanism for pulsar glitches
- Narrowband searches for continuous and long-duration transient gravitational waves from known pulsars in the LIGO-Virgo third observing run
- Rotational evolution of young pulsars due to superfluid decoupling
- Superfluid turbulence and pulsar glitch statistics
- Oscillations of General Relativistic Multi-fluid/Multi-layer Compact Stars
- A Cellular Automaton Model of Pulsar Glitches
- An Evidence Based Search Method For Gravitational Waves From Neutron Star Ring-downs
- Superfluid vortex unpinning as a coherent noise process, and the scale invariance of pulsar glitches
- Magnetic Axis Drift and Magnetic Spot Formation in Neutron Stars with Toroidal Fields
- Peculiar Glitch of PSR J1119-6127 and Extension of the Vortex Creep Model
- Return of the Big Glitcher: NICER timing and glitches of PSR J0537-6910
- The glitches and rotational history of the highly energetic young pulsar PSR J05376910
- A New, Low Braking Index For the LMC Pulsar B0540-69
- Mountain formation by repeated, inhomogeneous crustal failure in a neutron star
- Pulsar glitch detection with a hidden Markov model
- Tkachenko modes as sources of quasiperiodic pulsar spin variations
- Studies of Neutron Stars at Optical/IR Wavelengths
- Observations of Six Glitches in PSR B1737-30
- Insights into the physics of neutron star interiors from pulsar glitches
- Generating quasiperiodic pulsar glitches using a state-dependent Poisson process
- Timing six energetic rotation-powered X-ray pulsars, including the fast-spinning young PSR J0058-7218 and Big Glitcher PSR J0537-6910
- Search for transient gravitational waves in coincidence with short duration radio transients during 2007-2013
- Prospects for detecting transient quasi-monochromatic gravitational waves from glitching pulsars with current and future detectors
- Nature of cyclical changes in the timing residuals from the pulsar B1642-03
- Glitching pulsars as gravitational wave sources
- Simulating pulsar glitches: an -body solver for superfluid vortex motion in two dimensions
- An updated glitch rate law inferred from radio pulsars
- Search setup for long-duration transient gravitational waves from glitching pulsars during LIGO-Virgo third observing run
- Stability of interlinked neutron vortex and proton flux-tube arrays in a neutron star -- III. Proton feedback
- Anti-glitches in accreting pulsars from superfluid vortex avalanches
- Searches for gravitational waves associated with pulsar glitches using a coherent network algorithm
- Statistical estimates of the pulsar glitch activity
- Pulsar glitch activity as a state-dependent Poisson process: parameter estimation and epoch prediction
- A Correlation in the Waiting-time Distributions of Solar Flares
- On the connection between radiative outbursts and timing irregularities in magnetars
- Probing Ensemble Properties of Vortex-avalanche Pulsar Glitches with a Stochastic Gravitational-Wave Background Search
- Measuring the vortex-nucleus pinning force from pulsar glitch rates
- Long-term statistics of pulsar glitches due to history-dependent avalanches
- Persistent gravitational radiation from glitching pulsars. II. Updated scaling with vortex number
- Search for continuous gravitational waves directed at sub-threshold radiometer candidates in O3 LIGO data
- A search for gravitational waves associated with the August 2006 timing glitch of the Vela pulsar
- Microglitches in radio pulsars: the role of strange nuggets
- The X-ray variation of M81* resolved by Chandra and NuSTAR
- Braking index of the frequently glitching PSR J05376910
- PSR J0537-6910: Exponential recoveries detected for 12 glitches
- Glitches and glitching clusters in rotation-powered pulsars
- The TRAPUM Small Magellanic Cloud pulsar survey with MeerKAT -- II. Nine new radio timing solutions and glitches from young pulsars
- On the challenges of Angular Momentum Transfer Mechanism of Pulsar Glitches
- Measuring the crust-superfluid coupling time-scale for 105 UTMOST pulsars with a Kalman filter