Timing accuracy of the Swift X-Ray Telescope in WT mode
G. Cusumano (1), V. La Parola (1), M. Capalbi (2,3), M. Perri (2,3),, A. P. Beardmore (4), D. N. Burrows (5), S. Campana (6), J. A. Kennea (5), J., P. Osborne (4), B. Sbarufatti (5,6), G. Tagliaferri (6) ((1) INAF-IASF Pa,, (2) ASI SDC, (3) INAF-OAR, (4) Un. Leicester, (5) PSU

TL;DR
This paper evaluates the timing accuracy of the Swift X-Ray Telescope in WT mode using Crab pulsar observations, revealing systematic offsets and confirming high period determination precision.
Contribution
It provides the first in-flight calibration of Swift XRT timing in WT mode, identifying systematic timing offsets and validating the instrument's high precision in period measurement.
Findings
Period determination accuracy is within a few picoseconds.
Main peak in Crab profile leads RXTE by ~200 microseconds.
Systematic offset likely affects WT mode timing measurements.
Abstract
The X-Ray Telescope (XRT) on board Swift was mainly designed to provide detailed position, timing and spectroscopic information on Gamma-Ray Burst (GRB) afterglows. During the mission lifetime the fraction of observing time allocated to other types of source has been steadily increased. In this paper, we report on the results of the in-flight calibration of the timing capabilities of the XRT in Windowed Timing read-out mode. We use observations of the Crab pulsar to evaluate the accuracy of the pulse period determination by comparing the values obtained by the XRT timing analysis with the values derived from radio monitoring. We also check the absolute time reconstruction measuring the phase position of the main peak in the Crab profile and comparing it both with the value reported in literature and with the result that we obtain from a simultaneous Rossi X-Ray Timing Explorer (RXTE)…
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