Astreaks: Astrometry of NEOs with trailed background stars
Kritti Sharma, Harsh Kumar, Harsh Choudhary, Varun Bhalerao,, Vishwajeet Swain, Bryce Bolin, G.C. Anupama, Sudhanshu Barway, Simran Joharle, and Vedant Shenoy

TL;DR
Astreaks is an automated algorithm that accurately detects and performs astrometry on fast-moving NEOs with streaked background stars in non-sidereal images, improving follow-up capabilities.
Contribution
We introduce Astreaks, a novel streak detection algorithm that enables precise astrometry of NEOs in non-sidereal data, validated on real telescope images with high success.
Findings
Achieved 100% success in astrometric solutions for all images.
Standard deviation of O-C residuals is 0.52 arcseconds.
Residuals are below 2 arcseconds for 98.4% of measurements.
Abstract
The detection and accurate astrometry of fast-moving near-Earth objects (NEOs) has been a challenge for the follow-up community. Their fast apparent motion results in streaks in sidereal images, thus affecting the telescope's limiting magnitude and astrometric accuracy. A widely adopted technique to mitigate trailing losses is non-sidereal tracking, which transfers the streaking to background reference stars. However, no existing publicly available astrometry software is configured to detect such elongated stars. We present Astreaks, a streaking source detection algorithm, to obtain accurate astrometry of NEOs in non-sidereal data. We validate the astrometric accuracy of Astreaks on 371 non-sidereally tracked images for 115 NEOs with two instrument set-ups of the GROWTH-India Telescope. The observed NEOs had V-band magnitude in the range [15, 22] with proper motion up to…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Gamma-ray bursts and supernovae
