The Thousand-Pulsar-Array programme on MeerKAT – XIV. On the high linearly polarized pulsar signals

Author:

Johnston Simon1ORCID,Mitra Dipanjan23ORCID,Keith Michael J4ORCID,Oswald Lucy S56ORCID,Karastergiou Aris5

Affiliation:

1. Australia Telescope National Facility, CSIRO Space and Astronomy , PO Box 76, Epping NSW 1710 , Australia

2. National Centre for Radio Astrophysics, Tata Institute for Fundamental Research , Post Bag 3, Ganeshkhind, Pune 411007 , India

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

4. Jodrell Bank Centre for Astrophysics, Department of Physics and Astronomy, University of Manchester , Manchester M13 9PL , UK

5. Department of Astrophysics, University of Oxford , Denys Wilkinson Building, Keble Road, Oxford OX1 3RH , UK

6. Magdalen College, University of Oxford , Oxford OX1 4AU , UK

Abstract

ABSTRACT The S-shaped swing of the linear polarization position angle (PPA) observed in many pulsars can be interpreted by the rotating vector model (RVM). However, efforts to fit the RVM for a large sample of pulsars observed with the MeerKAT telescope as a part of the Thousand-Pulsar-Array (TPA) programme, only succeeded for about half the cases. High time-resolution studies suggest that the failed cases arise due to the presence of orthogonal polarization modes, or highly disordered distribution of PPA points. One such example is PSR J1645−0317. Recently it has been shown that the RVM can be recovered in this pulsar by using only time samples which are greater than 80 per cent linearly polarized. In this work, we test this novel approach on the brightest 249 pulsars from the TPA sample, of which 177 yield sufficient highly polarized samples to be amenable to our method. Remarkably, only nine of these pulsars (5 per cent) now fail to fit the RVM as opposed to 59 per cent from the original analysis. This result favours the paradigm that the underlying mechanism is coherent curvature radiation.

Funder

CSIRO

Department of Atomic Energy, Government of India

National Science Centre, Poland

Swinburne University of Technology

Australian Government

Publisher

Oxford University Press (OUP)

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