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TRANSLIENT: Detecting Transients Resulting from Point Source Motion or Astrometric Errors

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arxiv 2403.09771 v1 pith:U3DOIXSM submitted 2024-03-14 astro-ph.IM

classification astro-ph.IM
keywords motionsourcetranslientsubtractiondetectionimagemovingalarms
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Detection of moving sources over complicated background is important for several reasons. First is measuring the astrophysical motion of the source. Second is that such motion resulting from atmospheric scintillation, color refraction, or astrophysical reasons is a major source of false alarms for image subtraction methods. We extend the Zackay, Ofek, and Gal-Yam image subtraction formalism to deal with moving sources. The new method, named translient (translational transient) detector, applies hypothesis testing between the hypothesis that the source is stationary and that the source is moving. It can be used to detect source motion or to distinguish between stellar variability and motion. For moving source detection, we show the superiority of translient over the proper image subtraction, using the improvement in the receiver-operating characteristic curve. We show that in the small translation limit, Translient is an optimal detector of point source motion in any direction. Furthermore, it is numerically stable, fast to calculate, and presented in a closed form. Efficient transient detection requires both the proper image subtraction statistics and the translient statistics: when the translient statistic is higher, then the subtraction artifact is likely due to motion. We test our algorithm both on simulated data and on real images obtained by the Large Array Survey Telescope (LAST). We demonstrate the ability of translient to distinguish between motion and variability, which has the potential to reduce the number of false alarms in transients detection. We provide the translient implementation in Python and MATLAB.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 2 citations worldwide. Full citation record

  1. A search for minute-time-scale flares from the transient AT\,2024wpp

    astro-ph.HE 2025-08 unverdicted novelty 5.0 of 10

    No minute-timescale optical flares were found from AT2024wpp in 23 hours of monitoring, setting a 2-sigma duty-cycle upper limit of 0.02 and a flare rate below 0.11 per hour.

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