MeerKAT observations of pair-plasma induced birefringence in the double pulsar eclipses

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Hauptverfasser: Lower, M. E., Kramer, M., Johnston, S., Breton, R. P., Wex, N., Bailes, M., Buchner, S., Camilo, F., Oswald, L. S., Reardon, D. J., Shannon, R. M., Serylak, M., Krishnan, V. Venkatraman
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Veröffentlicht: 2024
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author Lower, M. E.
Kramer, M.
Johnston, S.
Breton, R. P.
Wex, N.
Bailes, M.
Buchner, S.
Camilo, F.
Oswald, L. S.
Reardon, D. J.
Shannon, R. M.
Serylak, M.
Krishnan, V. Venkatraman
author_facet Lower, M. E.
Kramer, M.
Johnston, S.
Breton, R. P.
Wex, N.
Bailes, M.
Buchner, S.
Camilo, F.
Oswald, L. S.
Reardon, D. J.
Shannon, R. M.
Serylak, M.
Krishnan, V. Venkatraman
contents PSR J0737$-$3039A/B is unique among double neutron star systems. Its near-perfect edge-on orbit causes the fast spinning pulsar A to be eclipsed by the magnetic field of the slow spinning pulsar B. Using high-sensitivity MeerKAT radio observations combined with updated constraints on the system geometry, we studied the impact of these eclipses on the incident polarization properties of pulsar A. Averaging light curves together after correcting for the rotation of pulsar B revealed enormous amounts of circular polarization and rapid changes in the linear polarization position angle, which occur at phases where emission from pulsar A is partially transmitted through the magnetosphere of pulsar B. These behaviours confirm that the eclipse mechanism is the result of synchrotron absorption in a relativistic pair-plasma confined to the closed-field region of pulsar B's truncated dipolar magnetic field. We demonstrate that changes in circular polarization handedness throughout the eclipses are directly tied to the average line of sight magnetic field direction of pulsar B, from which we unambiguously determine the complete magnetic and viewing geometry of the pulsar.
format Preprint
id arxiv_https___arxiv_org_abs_2410_12510
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle MeerKAT observations of pair-plasma induced birefringence in the double pulsar eclipses
Lower, M. E.
Kramer, M.
Johnston, S.
Breton, R. P.
Wex, N.
Bailes, M.
Buchner, S.
Camilo, F.
Oswald, L. S.
Reardon, D. J.
Shannon, R. M.
Serylak, M.
Krishnan, V. Venkatraman
High Energy Astrophysical Phenomena
Plasma Physics
PSR J0737$-$3039A/B is unique among double neutron star systems. Its near-perfect edge-on orbit causes the fast spinning pulsar A to be eclipsed by the magnetic field of the slow spinning pulsar B. Using high-sensitivity MeerKAT radio observations combined with updated constraints on the system geometry, we studied the impact of these eclipses on the incident polarization properties of pulsar A. Averaging light curves together after correcting for the rotation of pulsar B revealed enormous amounts of circular polarization and rapid changes in the linear polarization position angle, which occur at phases where emission from pulsar A is partially transmitted through the magnetosphere of pulsar B. These behaviours confirm that the eclipse mechanism is the result of synchrotron absorption in a relativistic pair-plasma confined to the closed-field region of pulsar B's truncated dipolar magnetic field. We demonstrate that changes in circular polarization handedness throughout the eclipses are directly tied to the average line of sight magnetic field direction of pulsar B, from which we unambiguously determine the complete magnetic and viewing geometry of the pulsar.
title MeerKAT observations of pair-plasma induced birefringence in the double pulsar eclipses
topic High Energy Astrophysical Phenomena
Plasma Physics
url https://arxiv.org/abs/2410.12510