Implications of the interstellar object 1I/'Oumuamua for planetary dynamics and planetesimal formation
arXiv:1711.09599 · doi:10.1093/mnras/sty468
Abstract
'Oumuamua, the first bona-fide interstellar planetesimal, was discovered passing through our Solar System on a hyperbolic orbit. This object was likely dynamically ejected from an extrasolar planetary system after a series of close encounters with gas giant planets. To account for 'Oumuamua's detection, simple arguments suggest that ~1 Earth mass of planetesimals are ejected per Solar mass of Galactic stars. However, that value assumes mono-sized planetesimals. If the planetesimal mass distribution is instead top-heavy the inferred mass in interstellar planetesimals increases to an implausibly high value. The tension between theoretical expectations for the planetesimal mass function and the observation of 'Oumuamua can be relieved if a small fraction (~0.1-1%) of planetesimals are tidally disrupted on the pathway to ejection into 'Oumuamua-sized fragments. Using a large suite of simulations of giant planet dynamics including planetesimals, we confirm that 0.1-1% of planetesimals pass within the tidal disruption radius of a gas giant on their pathway to ejection. 'Oumuamua may thus represent a surviving fragment of a disrupted planetesimal. Finally, we argue that an asteroidal composition is dynamically disfavoured for 'Oumuamua, as asteroidal planetesimals are both less abundant and ejected at a lower efficiency than cometary planetesimals.
MNRAS, in press
References in corpus (35)
- Dynamical Outcomes of Planet-Planet Scattering
- Origins of Eccentric Extrasolar Planets: Testing the Planet-Planet Scattering Model
- No large population of unbound or wide-orbit Jupiter-mass planets
- A New Planet Around an M Dwarf: Revealing a Correlation Between Exoplanets and Stellar Mass
- Origin of water in the inner Solar System: Planetesimals scattered inward during Jupiter and Saturn's rapid gas accretion
- Planets around evolved intermediate-mass stars. I. Two substellar companions in the open clusters NGC 2423 and NGC 4349
- Close-in planetesimal formation by pile-up of drifting pebbles
- Formation of planetary debris discs around white dwarfs I: Tidal disruption of an extremely eccentric asteroid
- Initial mass function of planetesimals formed by the streaming instability
- Steady-State Size Distributions for Collisional Populations: Analytical Solution with Size-Dependent Strength
- Full Numerical Simulations of Catastrophic Small Body Collisions
- Interstellar Interloper 1I/2017 U1: Observations from the NOT and WIYN Telescopes
- An Observational Upper Limit on the Interstellar Number Density of Asteroids and Comets
- Planet-planet scattering in planetesimal disks
- The population of long-period transiting exoplanets
- 1I/2017 U1 (`Oumuamua) is Hot: Imaging, Spectroscopy and Search of Meteor Activity
- Hydrogen delivery onto white dwarfs from remnant exo-Oort cloud comets
- Col-OSSOS: Colors of the Interstellar Planetesimal 1I/`Oumuamua
- Constraining the giant planets' initial configuration from their evolution: implications for the timing of the planetary instability
- The origin of interstellar asteroidal objects like 1I/2017 U1 'Oumuamua
- APO Time Resolved Color Photometry of Highly-Elongated Interstellar Object 1I/'Oumuamua
- The tumbling rotational state of 1I/`Oumuamua
- On the migration of protoplanets embedded in circumbinary disks
- A Direct Imaging Survey of Spitzer detected debris disks: Occurrence of giant planets in dusty systems
- Evaporation and Accretion of Extrasolar Comets Following White Dwarf Kicks
- Implications for planetary system formation from interstellar object 1I/2017 U1 (`Oumuamua)
- 1I/`Oumuamua as a Tidal Disruption Fragment From a Binary Star System
- Realistic Detectability of Close Interstellar Comets
- The Demographics of Rocky Free-Floating Planets and their Detectability by WFIRST
- Eight billion asteroids in the Oort cloud
- Prospects for Backtracing 1I/`Oumuamua and Future Interstellar Objects
- Pole, Pericenter, and Nodes of the Interstellar Minor Body A/2017 U1
- The scattering outcomes of Kepler circumbinary planets: planet mass ratio
- Tumbling motion of 1I/'Oumuamua reveals body's violent past
- -Variational Solutions of Multivalued Backward Stochastic Differential Equations
Cited by in corpus (48)
- The Natural History of 'Oumuamua
- Spitzer Observations of Interstellar Object 1I/`Oumuamua
- The Mass and Size Distribution of Planetesimals Formed by the Streaming Instability. II. The Effect of the Radial Gas Pressure Gradient
- The origin of interstellar asteroidal objects like 1I/2017 U1 'Oumuamua
- The Feasibility and Benefits of In Situ Exploration of `Oumuamua-like objects
- Tidal disruption of planetary bodies by white dwarfs I: A hybrid SPH-analytical approach
- 1I/`Oumuamua as a Tidal Disruption Fragment From a Binary Star System
- Tidal fragmentation as the origin of 1I/2017 U1 ('Oumuamua)
- Origin of 1I/'Oumuamua. I. An ejected protoplanetary disk object?
- Could 1I/'Oumuamua be an icy fractal aggregate?
- 1I/'Oumuamua as an N2 ice fragment of an exo-pluto surface. II. Generation of N2 ice fragments and the origin of 'Oumuamua
- Characterization of the Nucleus, Morphology and Activity of Interstellar Comet 2I/Borisov by Optical and Near-Infrared GROWTH, Apache Point, IRTF, ZTF and Keck Observations
- Subsurface Exolife
- Spin Evolution and Cometary Interpretation of the Interstellar Minor Object 1I/2017 'Oumuamua
- 1I/2017 'Oumuamua-like Interstellar Asteroids as Possible Messengers from the Dead Stars
- Constraints on the Occurrence of 'Oumuamua-Like Objects
- Origin of 1I/'Oumuamua. II. An ejected exo-Oort cloud object?
- Plausible home stars of the interstellar object 'Oumuamua found in Gaia DR2
- A hypothesis for the rapid formation of planets
- Implications of Captured Interstellar Objects for Panspermia and Extraterrestrial Life
- Capture of interstellar objects: a source of long-period comets
- A kinematical age for the interstellar object 1I/'Oumuamua
- Planet seeding through gas-assisted capture of interstellar objects
- Formation of Terrestrial Planets
- Hidden Planets: Implications from 'Oumuamua and DSHARP
- Why is Interstellar Object 1I/2017 U1 (`Oumuamua) Rocky, Tumbling and Very Prolate?
- Interstellar Now! Missions to and Sample Returns from Nearby Interstellar Objects
- Survivor bias: divergent fates of the Solar System's ejected vs. persisting planetesimals
- What and Whence 1I/`Oumuamua: A Contact Binary from the Debris of a Young Planetary System?
- Linking the formation and fate of exo-Kuiper belts within solar system analogues
- The Galactic Interstellar Object Population: A Framework for Prediction and Inference
- Search for OH 18-cm radio emission from 1I/2017 U1 with the Green Bank telescope
- Orphaned Exomoons: Tidal Detachment and Evaporation Following an Exoplanet-Star Collision
- New Insights into Interstellar Object 1I/2017 U1 (`Oumuamua) from SOHO/STEREO Nondetections
- Interstellar planetesimals: potential seeds for planet formation?
- A general method for assessing the origin of interstellar small bodies: the case of 1I/2017 U1 ('Oumuamua)
- High-Drag Interstellar Objects And Galactic Dynamical Streams
- Capture of interstellar objects I: the capture cross-section
- Collisional Elongation: Possible Origin of Extremely Elongated Shape of 1I/`Oumuamua
- Capture of interstellar objects II: by the Solar system
- Chasing Nomadic Worlds: A New Class of Deep Space Missions
- The New Astronomical Frontier of Interstellar Objects
- Observable tests for the light-sail scenario of interstellar objects
- A Real-Time Search for Interstellar Impacts on the Moon
- Detecting Interstellar Objects Through Stellar Occultations
- Ejection of material --"Jurads" -- from post main sequence planetary systems
- Astro2020 Science White Paper: Triggered High-Priority Observations of Dynamic Solar System Phenomena
- Discerning between different 'Oumuamua models by optical and infrared observations