Modeling the light curve of `Oumuamua: evidence for torque and disc-like shape
arXiv:1906.03696 · doi:10.1093/mnras/stz2380
Abstract
We present the first attempt to fit the light curve of the interstellar visitor `Oumuamua using a physical model which includes optional torque. We consider both conventional (Lommel-Seeliger triaxial ellipsoid) and alternative ("black-and-white ball", "solar sail") brightness models. With all the brightness models, some torque is required to explain the timings of the most conspicuous features -- deep minima -- of the asteroid's light curve. Our best-fitting models are a thin disc (aspect ratio 1:6) and a thin cigar (aspect ratio 1:8) which are very close to being axially symmetric. Both models are tumbling and require some torque which has the same amplitude in relation to `Oumuamua's linear non-gravitational acceleration as in Solar System comets which dynamics is affected by outgassing. Assuming random orientation of the angular momentum vector, we compute probabilities for our best-fitting models. We show that cigar-shaped models suffer from a fine-tuning problem and have only 16 per cent probability to produce light curve minima as deep as the ones present in `Oumuamua's light curve. Disc-shaped models, on the other hand, are very likely (at 91 per cent) to produce minima of the required depth. From our analysis, the most likely model for `Oumuamua is a thin disc (slab) experiencing moderate torque from outgassing.
22 pages, 11 figures, published by MNRAS. Added HORIZONS reference
References in corpus (21)
- The Absolute Magnitude of the Sun in Several Filters
- Interstellar Interloper 1I/2017 U1: Observations from the NOT and WIYN Telescopes
- Could Solar Radiation Pressure Explain 'Oumuamua's Peculiar Acceleration?
- Spitzer Observations of Interstellar Object 1I/`Oumuamua
- Col-OSSOS: Colors of the Interstellar Planetesimal 1I/`Oumuamua
- APO Time Resolved Color Photometry of Highly-Elongated Interstellar Object 1I/'Oumuamua
- The tumbling rotational state of 1I/`Oumuamua
- On the rotation period and shape of the hyperbolic asteroid 1I/`Oumuamua (2017) U1 from its lightcurve
- The Excited Spin State of 1I/2017 U1 `Oumuamua
- Spin Evolution and Cometary Interpretation of the Interstellar Minor Object 1I/2017 'Oumuamua
- On the Anomalous Acceleration of 1I/2017 U1 `Oumuamua
- Why is Interstellar Object 1I/2017 U1 (`Oumuamua) Rocky, Tumbling and Very Prolate?
- Volume uncertainty assessment method of asteroid models from disk-integrated visual photometry
- Dust bombardment can explain the extremely elongated shape of 1I/'Oumuamua and the lack of interstellar objects
- Component periods of non-principal-axis rotation and their manifestations in the lightcurves of asteroids and bare cometary nuclei
- Radio SETI Observations of the Interstellar Object 'Oumuamua
- Collisional Elongation: Possible Origin of Extremely Elongated Shape of 1I/`Oumuamua
- Tumbling motion of 1I/'Oumuamua reveals body's violent past
- Outgassing As Trigger of 1I/`Oumuamua's Nongravitational Acceleration: Could This Hypothesis Work at All?
- 1I/`Oumuamua and the Problem of Survival of Oort Cloud Comets Near the Sun
- Non-Gravitational Forces and Spin Evolution of Comets
Cited by in corpus (32)
- Evidence that 1I/2017 U1 (`Oumuamua) was composed of molecular hydrogen ice
- Tidal fragmentation as the origin of 1I/2017 U1 ('Oumuamua)
- 1I/'Oumuamua as an N2 ice fragment of an exo-Pluto surface: I. size and compositional constraints
- Constraints on the Occurrence of 'Oumuamua-Like Objects
- Acceleration of 1I/`Oumuamua from radiolytically produced H in HO ice
- Destruction of molecular hydrogen ice and Implications for 1I/2017 U1 (`Oumuamua)
- From a Different Star: 3I/ATLAS in the context of the Ōtautahi-Oxford interstellar object population model
- Evidence Suggesting that 'Oumuamua is the ~30 Myr-old product of a Molecular Cloud
- Assessing the Formation of Solid Hydrogen Objects in Starless Molecular Cloud Cores
- Hyperbolic Orbits in the Solar System: Interstellar Origin or Perturbed Oort Cloud Comets?
- On the Possibility of an Artificial Origin for `Oumuamua
- The Galactic Interstellar Object Population: A Framework for Prediction and Inference
- New Insights into Interstellar Object 1I/2017 U1 (`Oumuamua) from SOHO/STEREO Nondetections
- Misaligned circumbinary disks as efficient progenitors of interstellar asteroids
- On the aspect ratio of Oumuamua: less elongated shape for irregular surface properties
- Interstellar Asteroid Rotation with the Mechanical Torque Produced by Interstellar Medium
- Numerical Simulations of Tidal Deformation and Resulting Light Curves of Small Bodies: Material Constraints of 99942 Apophis and 1I/`Oumuamua
- Near-Discovery SOAR Photometry of the Third Interstellar Object: 3I/ATLAS
- Life in Elliptical Galaxies: Hot Spheroids, Fast Stars, Deadly Comets?
- Constraining the orientation of the spin axes of extrasolar minor bodies 1I/2017 U1 (`Oumuamua) and 2I/Borisov
- Observable tests for the light-sail scenario of interstellar objects
- Fitting the Light Curve of 1I/`Oumuamua with a Nonprincipal Axis Rotational Model and Outgassing Torques
- Shape model and spin state of non-principal axis rotator (5247) Krylov
- On The Spin Dynamics of Elongated Minor Bodies with Applications to a Possible Solar System Analogue Composition for `Oumuamua
- Configuration of Single Giant Planet Systems Generating `Oumuamua-Like Interstellar Asteroids
- Discerning between different 'Oumuamua models by optical and infrared observations
- Research Programs Arising from 'Oumuamua Considered as an Alien Craft
- Shape-Driven Selection Effects for Aspherical Near-Earth Objects in Systematic Surveys
- Considering contact forces during the formation of planetesimals by gravitational collapse: mutual orbits, spin states, and shapes
- Implications of evaporative cooling by H for 1I/`Oumuamua
- The Onset of Chaos in Permanently Deformed Binaries from Spin-Orbit and Spin-Spin Coupling
- Machine Learning Methods for Automated Interstellar Object Classification with LSST