English

GPU-based framework for detecting small Solar System bodies in targeted exoplanet surveys

Earth and Planetary Astrophysics 2023-03-29 v1 Instrumentation and Methods for Astrophysics

Abstract

Small Solar System bodies are pristine remnants of Solar System formation, which provide valuable insights for planetary science and astronomy. Their discovery and cataloging also have strong practical implications to life on Earth as the nearest asteroids could pose a serious impact threat. Concurrently with dedicated observational projects, searches for small bodies have been performed on numerous archival data sets from different facilities. Here, we present a framework to increase the scientific return of an exoplanet transit-search survey by recovering serendipitous detections of small bodies in its daily and archival data using a GPU-based synthetic tracking algorithm. As a proof of concept, we analysed 12×12arcmin212 \times 12 \mathrm{arcmin^2} sky fields observed by the 1-m telescopes of the SPECULOOS survey. We analysed 90 sky fields distributed uniformly across the sky as part of the daily search for small bodies and 21 archival fields located within 5 deg from the ecliptic plane as part of the archival search (4.4 deg2^2 in total). Overall, we identified 400 known objects of different dynamical classes from Inner Main-belt Asteroids to Jupiter Trojans and 43 potentially new small bodies with no priors on their motion. We were able to reach limiting magnitude for unknown objects of VV=23.8 mag, and a retrieval rate of \sim80% for objects with V<V<22 mag and V<V<23.5 mag for the daily and archival searches, respectively. SPECULOOS and similar exoplanet surveys can thus serve as pencil-beam surveys for small bodies and probe parameter space beyond VV=22 mag.

Keywords

Cite

@article{arxiv.2303.07293,
  title  = {GPU-based framework for detecting small Solar System bodies in targeted exoplanet surveys},
  author = {Artem Burdanov and Samantha Hasler and Julien de Wit},
  journal= {arXiv preprint arXiv:2303.07293},
  year   = {2023}
}

Comments

Accepted for publication in MNRAS (Monthly Notices of the Royal Astronomical Society), 11 pages, 11 figures

R2 v1 2026-06-28T09:14:38.159Z