Predictions of the LSST Solar System Yield: Near-Earth Objects, Main Belt Asteroids, Jupiter Trojans, and Trans-Neptunian Objects
arXiv:2506.02487 · doi:10.3847/1538-3881/add685
Abstract
The NSF-DOE Vera C. Rubin Observatory is a new 8m-class survey facility presently being commissioned in Chile, expected to begin the 10yr-long Legacy Survey of Space and Time (LSST) by the end of 2025. Using the purpose-built Sorcha survey simulator (Merritt et al. In Press), and near-final observing cadence, we perform the first high-fidelity simulation of LSST's solar system catalog for key small body populations. We show that the final LSST catalog will deliver over 1.1 billion observations of small bodies and raise the number of known objects to 1.27E5 near-Earth objects, 5.09E6 main belt asteroids, 1.09E5 Jupiter Trojans, and 3.70E4 trans-Neptunian objects. These represent 4-9x more objects than are presently known in each class, making LSST the largest source of data for small body science in this and the following decade. We characterize the measurements available for these populations, including orbits, griz colors, and lightcurves, and point out science opportunities they open. Importantly, we show that ~70% of the main asteroid belt and more distant populations will be discovered in the first two years of the survey, making high-impact solar system science possible from very early on. We make our simulated LSST catalog publicly available, allowing researchers to test their methods on an up-to-date, representative, full-scale simulation of LSST data.
In press at The Astronomical Journal
References in corpus (20)
- Array Programming with NumPy
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- Solar System evolution from compositional mapping of the asteroid belt
- Optimization of the Observing Cadence for the Rubin Observatory Legacy Survey of Space and Time: a pioneering process of community-focused experimental design
- OSSOS VI. Striking Biases in the detection of large semimajor axis Trans-Neptunian Objects
- Tuning the Legacy Survey of Space and Time (LSST) Observing Strategy for Solar System Science
- Reanalyzing the visible colors of Centaurs and KBOs: what is there and what we might be missing
- A search of the full six years of the Dark Energy Survey for outer Solar System objects
- A million asteroid observations in the Sloan Digital Sky Survey
- Debiased albedo distribution for Near Earth Objects
- Reconstruction of asteroid spin states from Gaia DR3 photometry
- High-fidelity Simulations of the Near-Earth Object Search Performance of the Large Synoptic Survey Telescope
- The hot main Kuiper belt size distribution from OSSOS
- Trajectory of the stellar flyby that shaped the outer solar system
- Stellar occultations by Trans-Neptunian Objects
- Decameter-sized Earth impactors -- I: Orbital properties
- OSSOS. XXIX. The Population and Perihelion Distribution of the Detached Kuiper Belt
- Shape models and spin states of Jupiter Trojans: Testing the streaming instability formation scenario
- Primordial Orbital Alignment of Sednoids
- The DECam Ecliptic Exploration Project (DEEP). VII. The Strengths of Three Superfast Rotating Main-belt Asteroids from a Preliminary Search of DEEP Data
Cited by in corpus (8)
- Astrometric follow-up of near-Earth asteroid 2024 YR4 during a Torino scale level 3 alert
- The Perturbation Theory Approach to Stability in the Scattered Disk
- Limits on Stellar Flybys in the Solar Birth Cluster
- Predictions of Imminent Earth Impactors Discovered by LSST
- The Luminosity Function of Ultra-Faint Trans-Neptunian Objects Detected by JWST
- The forced orbital planes of the Plutinos and other resonant KBOs
- A Near-Earth Object Model Calibrated to Earth Impactors
- Rotational Light-curve Recovery and Predictions of the LSST Yield of Hildas