Correlated spin-down rates and radio emission in PSR B1859+07
arXiv:1510.04484 · doi:10.1093/mnras/stv2403
Abstract
We study the spin-down changes of PSR B185907 over a period of more than 28 years of radio observation. We identify that the time derivative of the rotational frequency () varies quasi-periodically with a period of 350 days, switching mainly between two spin-down states. The profile shape of the pulsar is correlated with the variation, producing two slightly different profile shapes corresponding to high- and low- states. In addition to these two normal emission states, we confirm the occasional flare-state of the pulsar, in which the emission appears early in spin phase compared to that of the common normal emission. The profile of the flare-state is significantly different from that of the two normal emission states. The correlation analysis further shows that the flare-state is not directly linked with the changes. With a simple emission beam model, we estimate the emission altitude of the normal emission to be 240~km, and explain the origin of the flare-state as an emission height variation from the leading edge of the beam. We also argue that the emission of these states can be explained with a partially active beam model. In this scenario, the trailing portion of the radio beam is usually active and the normal emission is produced. The flare-state occurs when the leading edge of the beam becomes active while the trailing part is being blocked. This model estimates a fixed emission altitude of 360~km. However, the cause of the flare-state (i.e. the emission height variation, or the time-dependent activity across the radio beam) is not easily explained.
9 pages, 8 figures, Accepted by MNRAS on 14 October 2015
References in corpus (10)
- Switched magnetospheric regulation of pulsar spin-down
- A periodically active pulsar giving insight into magnetospheric physics
- Pulsar Nulling and Mode Changing
- Detection of 107 glitches in 36 southern pulsars
- Wide-band Simultaneous Observations of Pulsars: Disentangling Dispersion Measure and Profile Variations
- Radio and X-ray observations of the intermittent pulsar J1832+0029
- The double pulsar: evidence for neutron star formation without an iron core-collapse supernova
- Constraints on viewing geometries from radio observations of -ray-loud pulsars using a novel method
- Understanding the spin-down rate changes of PSR B0919+06
- Realistic Modeling of the Pulse Profile of PSR J0737-3039A
Cited by in corpus (18)
- Spectral properties of 441 radio pulsars
- The CHIME Pulsar Project: System Overview
- The Thousand-Pulsar-Array programme on MeerKAT I: Science objectives and first results
- Mode switching and oscillations in PSR B1828-11
- An in-depth investigation of 11 pulsars discovered by FAST
- Rapid Modification of Neutron Star Surface Magnetic Field: A proposed mechanism for explaining Radio Emission State Changes in Pulsars
- Quasi-Periodicities in the Anomalous Emission Events in Pulsars B1859+07 and B0919+06
- Pulsar bi-drifting: implications for polar cap geometry
- A Statistical Analysis of the Nulling Pulsar Population
- Jiamusi Pulsar Observations: I. Abnormal emission events of PSR B0919+06
- Long term radio and X-ray evolution of the magnetar Swift J1818.0-1607
- Discovery of state transition behaviors in PSR J1124--5916
- Multi-frequency study of the peculiar pulsars PSR B0919+06 and PSR B1859+07
- Resolving discrete pulsar spin-down states with current and future instrumentation
- On the variable timing behavior of PSR B0540-69: an almost excellent example to study pulsar braking mechanism
- Timing and emission variation of PSR J1733-3716
- A renewed search for radio emission from the variable -ray pulsar PSR J20214026
- The unusual emission from PSR B1859+07 with FAST