Temporal variations in scattering and dispersion measure in the Crab Pulsar and their effect on timing precision
arXiv:1806.10486 · doi:10.1093/mnras/sty1727
Abstract
We have measured variations in scattering time scales in the Crab Pulsar over a 30-year period, using observations made at 610 MHz with the 42-ft telescope at Jodrell Bank Observatory. Over more recent years, where regular Lovell Telescope observations at frequencies around 1400 MHz were available, we have also determined the dispersion measure variations, after disentangling the scattering delay from the dispersive delay. We demonstrate a relationship between scattering and dispersion measure variations, with a correlation coefficient of . The short time scales over which these quantities vary, the size of the variations, and the close correlation between scattering and dispersion measure all suggest that the effects are due to discrete structures within the Crab Nebula, with size scales of AU (corresponding to an angular size of mas at an assumed distance of 2200 pc). We mitigate the effects of scattering on the observed pulse shape by using the measured scattering information to modify the template used for generating the pulse arrival times, thus improving the precision to which the pulsar can be timed. We test this on timing data taken during periods of high scattering, and obtain a factor of two improvement in the root mean square of the timing residuals.
10 pages, 7 figures. Accepted for publication in MNRAS
References in corpus (11)
- Switched magnetospheric regulation of pulsar spin-down
- The relativistic pulsar-white dwarf binary PSR J1738+0333 II. The most stringent test of scalar-tensor gravity
- 45 Years of Rotation of the Crab Pulsar
- A Precise Proper Motion for the Crab Pulsar, and the Difficulty of Testing Spin-Kick Alignment for Young Neutron Stars
- Frequency-Dependent Dispersion Measures and Implications for Pulsar Timing
- Pulsar Observations of Extreme Scattering Events
- Investigation of the bi-drifting subpulses of radio pulsar B1839-04 utilising the open-source data-analysis project PSRSALSA
- Systematic and Stochastic Variations in Pulsar Dispersion Measures
- Extreme Scattering Events Towards Two Young Pulsars
- Correlation of the scattering and dispersion events in the Crab Nebula pulsar
- Robust Estimation of Scattering in Pulsar Timing Analysis
Cited by in corpus (24)
- The Astrophysics of Nanohertz Gravitational Waves
- Gravitational-wave constraints on the equatorial ellipticity of millisecond pulsars
- The CHIME Pulsar Project: System Overview
- Dissecting the Local Environment of FRB 190608 in the Spiral Arm of its Host Galaxy
- A Large Scale Magneto-ionic Fluctuation in the Local Environment of Periodic Fast Radio Burst Source, FRB 20180916B
- The Thousand-Pulsar-Array programme on MeerKAT III: Giant pulse characteristics of PSR J05406919
- Revealing the Dynamic Magneto-ionic Environments of Repeating Fast Radio Burst Sources through Multi-year Polarimetric Monitoring with CHIME/FRB
- A detailed study of giant pulses from PSR B1937+21 using the Large European Array for Pulsars
- Double-lens Scintillometry: The variable scintillation of pulsar B1508+55
- Probing the local interstellar medium with scintillometry of the bright pulsar B1133+16
- Scattering variability detected from the circumsource medium of FRB 20190520B
- The NANOGrav 12.5-Year Data Set: Monitoring Interstellar Scattering Delays
- Long-term scintillation studies of EPTA pulsars. I. Observations and basic results
- Resolving the emission regions of the Crab pulsar's giant pulses
- Resolving the Emission Regions of the Crab Pulsar's Giant Pulses II. Evidence for Relativistic Motion
- Kinematics of Crab Giant Pulses
- CHIME Discovery of a Binary Pulsar with a Massive Non-Degenerate Companion
- First Results from the REAL-time Transient Acquisition backend (REALTA) at the Irish LOFAR station
- A Persistently Active Fast Radio Burst source Embedded in an Expanding Supernova Remnant
- Multi-band Extension of the Wideband Timing Technique
- A Simultaneous Dual-Frequency Scintillation Arc Survey of Six Bright Canonical Pulsars Using the Upgraded Giant Metrewave Radio Telescope
- Optical photon-counting observation of the Crab pulsar with Kanata telescope using prototype IMONY
- Improving DM estimates using low-frequency scattering-broadening estimates
- Indication for Decreasing Dispersion Measure in the Population of Repeating Fast Radio Bursts and Connection to Young Supernova Remnant Expansion