Amateur telescopes discover a kilometre-sized Kuiper belt object from stellar occultation
arXiv:1910.09994 · doi:10.1038/s41550-018-0685-8
Abstract
Kuiper belt objects (KBOs) are thought to be the remnant of the early solar system, and their size distribution provides an opportunity to explore the formation and evolution of the outer solar system. In particular, the size distribution of kilometre-sized (radius = 1-10 km) KBO represents a signature of initial planetesimal sizes when planets form. These kilometre-sized KBOs are extremely faint, and it is impossible to detect them directly. Instead, monitoring of stellar occultation events is one possible way to discover these small KBOs. Hitherto, however, there has been no observational evidence for the occultation events by KBOs with radii of 1-10 km. Here we report the first detection of a single occultation event candidate by a KBO with a radius of 1.3 km, which is simultaneously provided by two low-cost small telescopes coupled with commercial CMOS cameras. From this detection, we conclude that a surface number density of KBOs with radii exceeding km is . This surface number density favours a theoretical size distribution model with an excess signature at a radius of 1-2 km. If this is a true detection, this implies that planetesimals before their runaway growth phase grow into kilometre-sized objects in the primordial outer solar system and remain as a major population of the present-day Kuiper belt.
23 pages, 10 figures, author final submission version, published in Nature Astronomy on 28 January 2019 (free version: https://rdcu.be/biPGW)
References in corpus (6)
- New Grids of ATLAS9 Model Atmospheres
- The Scattered Disk as the source of the Jupiter Family comets
- The Kuiper Belt Luminosity Function from m(R)=21 to 26
- Detectability of Occultation of Stars by Objects in the Kuiper Belt and Oort Cloud
- First Results From The Taiwanese-American Occultation Survey (TAOS)
- Organized Autotelescopes for Serendipitous Event Survey (OASES): design and performance
Cited by in corpus (25)
- The New Generation Planetary Population Synthesis (NGPPS). IV. Planetary systems around low-mass stars
- A re-assessment of the Kuiper belt size distribution for sub-kilometer objects, revealing collisional equilibrium at small sizes
- On the Anomalous Acceleration of 1I/2017 U1 `Oumuamua
- Collision Probabilities in the Edgeworth-Kuiper belt
- The Large Array Survey Telescope -- Science Goals
- Stellar occultations by Trans-Neptunian Objects
- The interplay between pebble and planetesimal accretion in population synthesis models and its role in giant planet formation
- On the multiple generations of planetary embryos
- Evidence for a rapid decrease in Pluto's atmospheric pressure revealed by a stellar occultation in 2019
- New constraint on the atmosphere of (50000) Quaoar from a stellar occultation
- Detectability of optical transients with timescales of sub-seconds
- The Weizmann Fast Astronomical Survey Telescope (W-FAST): System Overview
- The influence of planetesimal fragmentation on planet formation
- Diffraction modelling of a 2023 March 5 stellar occultation by subkilometer-sized asteroid (98943) 2001 CC21
- The Case for a Large-Scale Occultation Network
- Detection of an extremely large impact flash on Jupiter by high-cadence multiwavelength observations
- The New Astronomical Frontier of Interstellar Objects
- Detecting Interstellar Objects Through Stellar Occultations
- Understanding the trans-Neptunian Solar system: Reconciling the results of serendipitous stellar occultations and the inferences from the cratering record
- The first detection of an atmosphere on a trans-Neptunian object beyond Pluto
- CHIMERA Occultation Constraints on the Abundance of Kilometer-scale Kuiper Belt Objects
- Modelling the optical energy profile of the 2021 October Jupiter impact flash
- Trans-Neptunian Space and the Post-Pluto Paradigm
- Cloud reflection modelling for impact flashes on Jupiter: A new constraint on the bulk properties of the impact objects
- Faint debris disk peering through superflare light echo