Spinup and Disruption of Interstellar Asteroids by Mechanical Torques, and Implications for 1I/2017 U1 (`Oumuamua)
arXiv:1802.01335 · doi:10.3847/1538-4357/aac3db
Abstract
The discovery of the first interstellar asteroid, 1I/2017 U1 (`Oumuamua), has opened a new era for research on interstellar objects. In this paper, we study the rotational dynamics of interstellar asteroids (ISAs) of irregular shapes moving through the interstellar gas. We find that regular mechanical torques resulting from the bombardment of gas flow on the irregular body could be important for the dynamics and destruction of ISAs. Mechanical torques can spin up the ISA, resulting in the breakup of the original ISA into small binary asteroids when the rotation rate exceeds the critical frequency. We find that the breakup timescale is short for ISAs of highly irregular shapes and low tensile strength. We apply our results to the first observed ISA, `Oumuamua, and suggest that its extreme elongated shape may originate from a reassembly of the binary fragments due to gravity along its journey in the interstellar medium. The tumbling of `Oumuamua could have been induced by rotational disruption due to mechanical torques. Finally, we discuss the survival possibility of high-velocity asteroids presumably formed by tidal disruption of planetary systems by the black hole at the Galactic center.
8 pages, 2 figures, accepted to Astrophysical Journal
References in corpus (15)
- Dynamics of rotationally fissioned asteroids: Source of observed small asteroid systems
- Interstellar Interloper 1I/2017 U1: Observations from the NOT and WIYN Telescopes
- Spectroscopy and thermal modelling of the first interstellar object 1I/2017 U1 'Oumuamua
- Interstellar Interlopers: Number Density and Origins of 'Oumuamua-like Objects
- Subsonic Mechanical Alignment of Irregular Grains
- Tidal effects on small bodies by massive black holes
- Col-OSSOS: Colors of the Interstellar Planetesimal 1I/`Oumuamua
- The tumbling rotational state of 1I/`Oumuamua
- Formation of sharp edges and planar areas of asteroids by polyhedral abrasion
- `Oumuamua as a messenger from the Local Association
- Ejection of rocky and icy material from binary star systems: Implications for the origin and composition of 1I/`Oumuamua
- Stress field and spin axis relaxation for inelastic triaxial ellipsoids
- Explaining the elongated shape of 'Oumuamua by the Eikonal abrasion model
- Electromagnetic forces on a relativistic spacecraft in the interstellar medium
- What and Whence 1I/`Oumuamua: A Contact Binary from the Debris of a Young Planetary System?
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- Dust bombardment can explain the extremely elongated shape of 1I/'Oumuamua and the lack of interstellar objects
- Interstellar Asteroid Rotation with the Mechanical Torque Produced by Interstellar Medium
- Observable Signatures of the Ejection Speed of Interstellar Objects from their Birth Systems
- Dust rotational dynamics in non-stationary shock: rotational disruption of nanoparticles by stochastic mechanical torques and spinning dust emission
- Detecting Interstellar Objects Through Stellar Occultations
- A Real-Time Search for Interstellar Impacts on the Moon
- Implications of evaporative cooling by H for 1I/`Oumuamua