1I/`Oumuamua as a Tidal Disruption Fragment From a Binary Star System
arXiv:1712.01823 · doi:10.3847/2041-8213/aaa3db
Abstract
1I/`Oumuamua is the first known interstellar small body, probably being only about 100~m in size. Against expectations based on comets, `Oumuamua does not show any activity and has a very elongated figure, and also exhibits undamped rotational tumbling. In contrast, `Oumuamua's trajectory indicates that it was moving with the local stars, as expected from a low-velocity ejection from a relatively nearby system. Here I assume that `Oumuamua is typical of 100-m interstellar objects, and speculate on its origins. I find that giant planets are relatively inefficient at ejecting small bodies from inner solar systems of main-sequence stars, and that binary systems offer a much better opportunity for ejections of non-volatile bodies. I also conclude that `Oumuamua is not a member of a collisional population, which could explain its dramatic difference from small asteroids. I observe that 100-m small bodies are expected to carry little mass in realistic collisional populations, and that occasional events when whole planets are disrupted in catastrophic encounters may dominate interstellar population of 100-m fragments. Unlike the Sun or Jupiter, red dwarf stars are very dense and are capable of thoroughly tidally disrupting terrestrial planets. I conclude that the origin of `Oumuamua as a fragment from a planet that was tidally disrupted and then ejected by a dense member of a binary system could explain its peculiarities.
Revised for ApJL
References in corpus (11)
- Origins of Eccentric Extrasolar Planets: Testing the Planet-Planet Scattering Model
- Steady-State Size Distributions for Collisional Populations: Analytical Solution with Size-Dependent Strength
- An Observational Upper Limit on the Interstellar Number Density of Asteroids and Comets
- The Formation of the Oort Cloud in Open Cluster Environments
- 1I/2017 U1 (`Oumuamua) is Hot: Imaging, Spectroscopy and Search of Meteor Activity
- Col-OSSOS: Colors of the Interstellar Planetesimal 1I/`Oumuamua
- APO Time Resolved Color Photometry of Highly-Elongated Interstellar Object 1I/'Oumuamua
- On the rotation period and shape of the hyperbolic asteroid 1I/`Oumuamua (2017) U1 from its lightcurve
- Implications for planetary system formation from interstellar object 1I/2017 U1 (`Oumuamua)
- Palomar Optical Spectrum of Hyperbolic Near-Earth Object A/2017 U1
- Tumbling motion of 1I/'Oumuamua reveals body's violent past
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- Properties of the Bare Nucleus of Comet 96P/Machholz 1
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- New Insights into Interstellar Object 1I/2017 U1 (`Oumuamua) from SOHO/STEREO Nondetections
- Misaligned circumbinary disks as efficient progenitors of interstellar asteroids
- Collisional Elongation: Possible Origin of Extremely Elongated Shape of 1I/`Oumuamua
- Retrograde orbits excess among observable interstellar objects
- Fitting the Light Curve of 1I/`Oumuamua with a Nonprincipal Axis Rotational Model and Outgassing Torques
- Observable tests for the light-sail scenario of interstellar objects
- Project Lyra: Catching 1I/'Oumuamua -- Using Laser Sailcraft in 2030
- Ejection of material --"Jurads" -- from post main sequence planetary systems