Profile Stochasticity in PSR J1909-3744
arXiv:1509.07505 · doi:10.1093/mnras/stv2089
Abstract
We extend the recently introduced Bayesian framework `Generative Pulsar Timing Analysis' to incorporate both pulse jitter (high frequency variation in the arrival time of the pulse) and epoch to epoch stochasticity in the shape of the pulse profile. This framework allows for a full timing analysis to be performed on the folded profile data, rather than the site arrival times as is typical in most timing studies. We apply this extended framework both to simulations, and to an 11 yr, 10 cm data set for PSR J19093744. Using simulations, we show that temporal profile variation can induce timing noise in the residuals that when performing a standard timing analysis is highly covariant with the signal expected from a gravitational wave (GW) background. When working in the profile domain, these variations are de-correlated from the expected GW signal, resulting in significant improvement in the obtained upper limits. Using the PSR J19093744 data set from the Parkes Pulsar Timing Array project, we find significant evidence for systematic high-frequency profile variation resulting from non-Gaussian noise in the oldest observing system, but no evidence for either detectable pulse jitter, or low-frequency profile shape variation. Using our profile domain framework we therefore obtain upper limits on a red noise process with a spectral index of of , consistent with previously published limits.
16 pages, 13 figures, 2 tables
References in corpus (9)
- Switched magnetospheric regulation of pulsar spin-down
- PolyChord: nested sampling for cosmology
- Gravitational waves from binary supermassive black holes missing in pulsar observations
- A Study of Multi-frequency Polarization Pulse Profiles of Millisecond Pulsars
- Limitations in timing precision due to single-pulse shape variability in millisecond pulsars
- Measuring pulse times of arrival from broadband pulsar observations
- Single pulse and profile variability study of PSR J1022+1001
- Bayesian estimation of non-Gaussianity in pulsar timing analysis
- Generative pulsar timing analysis
Cited by in corpus (11)
- The Parkes Pulsar Timing Array Third Data Release
- Timing of young radio pulsars I: Timing noise, periodic modulation and proper motion
- The UTMOST pulsar timing programme II: Timing noise across the pulsar population
- The disturbance of a millisecond pulsar magnetosphere
- Variability, polarimetry, and timing properties of single pulses from PSR J1713+0747 using the Large European Array for Pulsars
- Pulsar glitch detection with a hidden Markov model
- Characterising the rotational irregularities of the Vela pulsar from 21 yr of phase-coherent timing
- Wide-band Profile Domain Pulsar Timing Analysis
- A Trans-dimensional Bayesian Approach to Pulsar Timing Noise Analysis
- On using inspiralling supermassive binary black holes in the PTA frequency band as standard sirens to constrain dark energy
- Improving pulsar timing precision through superior Time-of-Arrival creation