Precision Southern Hemisphere pulsar VLBI astrometry: techniques and results for PSR J1559-4438
arXiv:0808.1598 · doi:10.1088/0004-637X/690/1/198
Abstract
We describe a data reduction pipeline for VLBI astrometric observations of pulsars, implemented using the ParselTongue AIPS interface. The pipeline performs calibration (including ionosphere modeling), phase referencing with proper accounting of reference source structure, amplitude corrections for pulsar scintillation, and position fitting to yield the position, proper motion and parallax. The optimal data weighting scheme to minimize the total error budget of a parallax fit, and how this scheme varies with pulsar parameters such as flux density, is also investigated. The robustness of the techniques employed are demonstrated with the presentation of the first results from a two year astrometry program using the Australian Long Baseline Array (LBA). The parallax of PSR J1559-4438 is determined to be 0.384 +- 0.081 mas (1 sigma), resulting in a distance estimate of 2600 pc which is consistent with earlier DM and HI absorption estimates.
30 pages, 8 figures, submitted to ApJ
References in corpus (7)
- The ATNF Pulsar Catalogue
- DiFX: A software correlator for very long baseline interferometry using multi-processor computing environments
- Getting Its Kicks: A VLBA Parallax for the Hyperfast Pulsar B1508+55
- The Fifth VLBA Calibrator Survey: VCS5
- Pulsar Parallaxes at 5 GHz with the Very Long Baseline Array
- Astrometric accuracy of phase-referenced observations with the VLBA and EVN
- Evidence for alignment of the rotation and velocity vectors in pulsars. II. Further data and emission heights
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- The Radio Parallax of the Crab Pulsar: A First VLBI Measurement Calibrated with Giant Pulses