Main and interpulse interaction in PSRs J1842+0358 and J1926+0737: evidence for interpole communication
arXiv:2508.15636 · doi:10.1051/0004-6361/202555190
Abstract
Our understanding of the elusive radio-pulsar emission mechanism would be deepened by determining the locality of the emission. Pulsars in which the two poles interact can potentially help solve this challenge. We here report the discovery of interaction of emission between the main and the interpulse in two pulsars -- J1842+0358 and J1926+0737, based on FAST and MeerKAT data. When emission is bright in one pulse, it is dim in the other. Even when split in just 2 groups (strong versus weak) the anti-correlated brightness can change by a factor 2. Both sources furthermore show the same quasi-periodic modulation from the main and interpulse, at timescales exceeding 100 pulse periods. The longitude stationary modulation from at least one pulse suggests that it is a key signature for interpulse pulsars showing main and interpulse interaction. If the interaction happens within an isolated magnetosphere, without external influences, either communication between the opposite poles is required, or global changes drive both. This detailed study of these two sources was only made possible by improved sensitivity. The fact that both show two-pole modulation strongly suggests this is a general phenomenon in interpulse pulsars. In regular pulsars only one pole is visible, and a number of these show correlated changes between the profile and spin-down rate, that are also thought to be caused by global magnetospheric changes. Our results strengthen the case that such interactive magnetospheres are common to all pulsars.
15 pages, 17 figures, 13 pages of appendix (including online material). Submitted
References in corpus (19)
- The Five-Hundred-Meter Aperture Spherical Radio Telescope (FAST) Project
- The Parkes multibeam pulsar survey: VI. Discovery and timing of 142 pulsars and a Galactic population analysis
- Switched magnetospheric regulation of pulsar spin-down
- A periodically active pulsar giving insight into magnetospheric physics
- Ab-initio pulsar magnetosphere: three-dimensional particle-in-cell simulations of oblique pulsars
- The Binary Companion of Young, Relativistic Pulsar J1906+0746
- Pulsar Radio Emission Mechanism: Radio Nanoshots as a Low Frequency Afterglow of Relativistic Magnetic Reconnection
- Meterwavelength Single-pulse Polarimetric Emission Survey II: The phenomenon of Drifting Subpulses
- Constraints on viewing geometries from radio observations of -ray-loud pulsars using a novel method
- On the beam properties of radio pulsars with interpulse emission
- The Thousand-Pulsar-Array programme on MeerKAT I: Science objectives and first results
- Periodic Modulation : Newly emergent emission behaviour in Pulsars
- On the pulse--width statistics in radio pulsars. I. Importance of the interpulse emission
- The main- interpulse interaction of PSR B1702-19
- Mapping the magnetosphere of PSR B1055-52
- The Thousand-Pulsar-Array programme on MeerKAT -- VIII. The subpulse modulation of 1198 pulsars
- High-precision geometry of a double-pole pulsar
- Periodic Q-mode modulation in PSR J18250935 (PSR B182209)
- Periodic and Phase-locked Modulation in PSR B1929+10 Observed with FAST