Observations and Modelling of Relativistic Spin Precession in PSR J1141-6545
R. N. Manchester, M. Kramer, I. H. Stairs, M. Burgay, F. Camilo, G. B., Hobbs, D. R. Lorimer, A. G. Lyne, M. A. McLaughlin, C. A. McPhee, A., Possenti, J. E. Reynolds, W. van Straten

TL;DR
This study presents 9.3 years of observations of PSR J1141-6545, revealing relativistic spin precession effects through pulse profile and polarization variations, and models the pulsar's spin dynamics and beam geometry.
Contribution
It provides the first detailed modeling of relativistic spin precession in PSR J1141-6545, including measurements of spin-orbit misalignment and beam asymmetry.
Findings
Pulse width changed by over a factor of three
Spin-orbit misalignment angle is about 110 degrees
The emission beam is highly asymmetric
Abstract
Observations of the binary pulsar PSR J1141-6545 using the Parkes radio telescope over 9.3 years show clear time-variations in pulse width, shape and polarization. We interpret these variations in terms of relativistic precession of the pulsar spin axis about the total angular momentum vector of the system. Over the nine years, the pulse width at the 50% level has changed by more than a factor of three. Large variations have also been observed in the 1400-MHz mean flux density. The pulse polarization has been monitored since 2004 April using digital filterbank systems and also shows large and systematic variations in both linear and circular polarization. Position angle variations, both across the pulse profile and over the data span, are complex, with major differences between the central and outer parts of the pulse profile. Modelling of the observed position angle variations by…
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