A mechanism of spark motion in inner acceleration region to investigate subpulse drifting in pulsars

Author:

Basu Rahul12ORCID,Mitra Dipanjan23,Melikidze George I24

Affiliation:

1. Inter-University Centre for Astronomy and Astrophysics, Pune 411007, India

2. Janusz Gil Institute of Astronomy, University of Zielona Góra, ul. Szafrana 2, PL-65-516 Zielona Góra, Poland

3. National Centre for Radio Astrophysics, Tata Institute of Fundamental Research, Pune 411007, India

4. Evgeni Kharadze Georgian National Astrophysical Observatory, 0301 Abastumani, Georgia

Abstract

ABSTRACT Coherent radio emission in pulsars is excited due to instabilities in a relativistically streaming non-stationary plasma flow, which is generated from sparking discharges in the inner acceleration region (IAR) near the stellar surface. A number of detailed works have shown the IAR to be a partially screened gap (PSG) dominated by non-dipolar magnetic fields with continuous outflow of ions from the surface. The phenomenon of subpulse drifting is expected to originate due to variable $\boldsymbol {E}\times \boldsymbol {B}$ drift of the sparks in PSG, where the sparks lag behind corotation velocity of the pulsar. Detailed observations show a wide variety of subpulse drifting behaviour where subpulses in different components of the profile have different phase trajectories. But the drifting periodicity is seen to be constant, within measurement errors, across all components of the profile. Using the concept of sparks lagging behind corotation speed in PSG as well as the different orientations of the surface non-dipolar magnetic fields, we have simulated the expected single pulse behaviour in a representative sample of pulsars. Our results show that the different types of drifting phase behaviour can be reproduced using these simple assumptions of spark dynamics in a non-dipolar IAR.

Funder

CEFIPRA

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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