Optical phase coherent timing of the Crab nebula pulsar with Iqueye at the ESO New Technology Telescope
arXiv:1402.2571 · doi:10.1093/mnras/stu136
Abstract
The Crab nebula pulsar was observed in 2009 January and December with a novel very fast optical photon counter, Iqueye, mounted at the ESO 3.5 m New Technology Telescope. Thanks to the exquisite quality of the Iqueye data, we computed accurate phase coherent timing solutions for the two observing runs and over the entire year 2009. Our statistical uncertainty on the determination of the phase of the main pulse and the rotational period of the pulsar for short (a few days) time intervals are s and ~0.5 ps, respectively. Comparison with the Jodrell Bank radio ephemerides shows that the optical pulse leads the radio one by ~240 s in January and ~160 s in December, in agreement with a number of other measurements performed after 1996. A third-order polynomial fit adequately describes the spin-down for the 2009 January plus December optical observations. The phase noise is consistent with being Gaussian distributed with a dispersion of s in most observations, in agreement with theoretical expectations for photon noise-induced phase variability.
10 pages, 5 figures. Accepted for publication in Monthly Notices of the Royal Astronomical Society
References in corpus (7)
- TEMPO2, a new pulsar timing package. I: Overview
- Tempo2, a new pulsar timing package. II: The timing model and precision estimates
- Switched magnetospheric regulation of pulsar spin-down
- Bright Giant Pulses from the Crab Nebula Pulsar: Statistical Properties, Pulse Broadening and Scattering due to the Nebula
- Simultaneous Absolute Timing of the Crab Pulsar at Radio and Optical Wavelengths
- Short time scale pulse stability of the Crab pulsar in the optical band
- The Crab pulsar seen with Aqueye at Asiago Cima Ekar Observatory
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