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Binary Eclipsing Millisecond Pulsars: A Decade of Timing
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We present results of long-term timing of eclipsing binaries PSR B1744-24A and PSR B1957+20 at Arecibo, the VLA, and Green Bank. Both pulsars exhibit irregularities in pulsar rotation and orbital motion. Increases and decreases of the orbital period of PSR B1957+20 are of order Delta-P_b/P_b ~ 10^-7, varying on a time scale of a few years. Over a decade of observations, the orbital period of PSR B1744-24A has only decreased, with time scale |P_b/P_b-dot| ~ 200 Myr. When the effects of orbital motion are removed from the timing data, long-term trends remain in the pulse phase residuals, with amplitudes of order 30 and 500 us, respectively, for B1957+20 and B1744-24A. Such large "timing noise" is not seen in other spun-up pulsars (isolated or binary), leading us to conclude that it is a consequence of mass flow in the system. Possible causes include variations in the rotation of the pulsars and movement of the binary systems along the line of sight (perhaps due to gravitational interactions with outflowing matter).
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Mining the time axis with TRON. I. Millisecond pulsars in Omega Centauri, Terzan 5 and 47 Tucanae detected through MeerKAT interferometric imaging
TRON detects five known or candidate millisecond pulsars in archival MeerKAT images, validating image-plane mining of the time axis for medium-timescale radio transients.
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