Survey-Wide Asteroid Discovery with a High-Performance Computing Enabled Non-Linear Digital Tracking Framework
arXiv:2503.08854 · doi:10.1016/j.ascom.2025.100987
Abstract
Modern astronomical surveys detect asteroids by linking together their appearances across multiple images taken over time. This approach faces limitations in detecting faint asteroids and handling the computational complexity of trajectory linking. We present a novel method that adapts ``digital tracking" - traditionally used for short-term linear asteroid motion across images - to work with large-scale synoptic surveys such as the Vera Rubin Observatory Legacy Survey of Space and Time (Rubin/LSST). Our approach combines hundreds of sparse observations of individual asteroids across their non-linear orbital paths to enhance detection sensitivity by several magnitudes. To address the computational challenges of processing massive data sets and dense orbital phase spaces, we developed a specialized high-performance computing architecture. We demonstrate the effectiveness of our method through experiments that take advantage of the extensive computational resources at Lawrence Livermore National Laboratory. This work enables the detection of significantly fainter asteroids in existing and future survey data, potentially increasing the observable asteroid population by orders of magnitude across different orbital families, from near-Earth objects (NEOs) to Kuiper belt objects (KBOs).
13 pages, 9 figures, accepted by Astronomy and Computing
References in corpus (26)
- Astropy: A Community Python Package for Astronomy
- The Astropy Project: Building an inclusive, open-science project and status of the v2.0 core package
- The Gaia mission
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- The Zwicky Transient Facility: System Overview, Performance, and First Results
- First Results from the Catalina Real-time Transient Survey
- The Zwicky Transient Facility: Data Processing, Products, and Archive
- ATLAS: A High-Cadence All-Sky Survey System
- The Pan-STARRS1 Database and Data Products
- Representations of celestial coordinates in FITS
- The Size Distribution of Trans-Neptunian Bodies
- The Planet Nine Hypothesis
- The Size Distribution of Kuiper belt objects for D> 10 km
- The LSST Data Management System
- Finding Very Small Near-Earth Asteroids using Synthetic Tracking
- Detection of a faint fast-moving near-Earth asteroid using synthetic tracking technique
- A re-assessment of the Kuiper belt size distribution for sub-kilometer objects, revealing collisional equilibrium at small sizes
- Digital Tracking Observations Can Discover Asteroids Ten Times Fainter than Conventional Searches
- Fast algorithms for slow moving asteroids: constraints on the distribution of Kuiper Belt Objects
- Accurate Ground-based Near-Earth-Asteroid Astrometry using Synthetic Tracking
- The Flux Distribution and Sky Density of 25th Magnitude Main Belt Asteroids
- Synthetic tracking using ZTF Long Dwell Datasets
- A search for Planet Nine using the Zwicky Transient Facility public archive
- A New Forced Photometry Service for the Zwicky Transient Facility
- A Search for L4 Earth Trojan Asteroids Using a Novel Track-Before-Detect Multi-Epoch Pipeline
- Fpack and Funpack User's Guide: FITS Image Compression Utilities