NEOExchange -- An online portal for NEO and Solar System science
arXiv:2102.10144 · doi:10.1016/j.icarus.2021.114387
Abstract
Las Cumbres Observatory (LCO) has deployed a network of ten identical 1-m telescopes to four locations. The global coverage and flexibility of the LCO network makes it ideal for discovery, follow-up, and characterization of all Solar System objects, and especially Near-Earth Objects (NEOs). We describe the "LCO NEO Follow-up Network" which makes use of the LCO network of robotic telescopes and an online, cloud-based web portal, NEOexchange, to perform photometric characterization and spectroscopic classification of NEOs and follow-up astrometry for both confirmed NEOs and unconfirmed NEO candidates. The follow-up astrometric, photometric, and spectroscopic characterization efforts are focused on those NEO targets that are due to be observed by the planetary radar facilities and those on the NHATS lists. Astrometry allows us to improve target orbits, making radar observations possible for objects with a short arc or large orbital uncertainty and also allows for the detection and measurement of the Yarkovsky effect on NEOs. Photometric & spectroscopic data allows us to determine the light curve shape and amplitude, measure rotation periods, determine the taxonomic classification, and improve the overall characterization of these targets. We describe the NEOexchange follow-up portal and the methodology adopted which allows the software to be packaged and deployed anywhere, including in off-site cloud services. This allows professionals, amateurs, and citizen scientists to plan, schedule and analyze NEO imaging and spectroscopy data using the LCO network and acts as a coordination hub for the NEO follow-up efforts. We illustrate these capabilities with examples of first period determinations for radar-targeted NEOs and its use to plan and execute multi-site photometric and spectroscopic observations of (66391) 1999 KW4, the subject of the most recent planetary defense exercise campaign.
35 pages, 6 figures, accepted by Icarus. Available on the web at https://lco.global/neoexchange/ code available from GitHub at https://github.com/LCOGT/neoexchange/
References in corpus (9)
- Gaia Data Release 1. Summary of the astrometric, photometric, and survey properties
- An introduction to Docker for reproducible research, with examples from the R environment
- astroquery: An Astronomical Web-Querying Package in Python
- Initial Performance of the NEOWISE Reactivation Mission
- The Zwicky Transient Facility Alert Distribution System
- The Mission Accessible Near-Earth Objects Survey (MANOS): first photometric results
- Non-gravitational Perturbations and Virtual Impactors: the case of asteroid 2009 FD
- The digest2 NEO Classification Code
- Ground-based astrometry calibrated by Gaia DR1: new perspectives in asteroid orbit determination
Cited by in corpus (5)
- Orbital Period Change of Dimorphos Due to the DART Kinetic Impact
- SsODNet: The Solar system Open Database Network
- A LOOK at Outbursts of Comet C/2014 UN (Bernardinelli-Bernstein) Near 20 au
- The Discovery and Evolution of a Possible New Epoch of Cometary Activity by the Centaur (2060) Chiron
- Identifying Periodic Variable Stars and Eclipsing Binary Systems with Long-Term Las Cumbres Observatory Photometric Monitoring of ZTF J0139+5245