How Sedna and family were captured in a close encounter with a solar sibling
arXiv:1506.03105 · doi:10.1093/mnras/stv1803
Abstract
The discovery of 2012VP113 initiated the debate on the origin of the Sedna family of planetesimals in orbit around the Sun. Sednitos roam the outer regions of the Solar System between the Egeworth--Kuiper belt and the Oort cloud, in extraordinary wide (a>150au) orbits with a large perihelion distance of q>30au compared to the Earth's (a=1au and eccentricity e=(1-q/a) ~ 0.0167 or q=1au). This population is composed of a dozen objects, which we consider a family because they have similar perihelion distance and inclination with respect to the ecliptic i=10--30deg. They also have similar argument of perihelion omega=340+/-55deg. There is no ready explanation for their origin. Here we show that these orbital parameters are typical for a captured population from the planetesimal disk of another star.Assuming the orbital elements of Sednitos have not changed since they acquired their orbits, we reconstruct the encounter that led to their capture. We conclude that they might have been captured in a near miss with a 1.8MSun star that impacted the Sun at ~340au at an inclination with respect to the ecliptic of 17--34deg with a relative velocity at infinity of ~4.3km/s. We predict that the Sednitos-region is populated by 930 planetesimals and the inner Oort cloud acquired ~440 planetesimals through the same encounter.
Accepted for publication in MNRAS; 7 pages, 2 figures, 1 table; extended discussion, corrected typos and references
References in corpus (9)
- Origin of the Structure of the Kuiper Belt during a Dynamical Instability in the Orbits of Uranus and Neptune
- Long-term tidal evolution of short-period planets with companions
- Resolved Debris Discs Around A Stars in the Herschel DEBRIS Survey
- Extreme trans-Neptunian objects and the Kozai mechanism: signalling the presence of trans-Plutonian planets
- The fragility of planetary systems
- Planet X revamped after the discovery of the Sedna-like object 2012 VP?
- Reassessing the formation of the Inner Oort cloud in an embedded star cluster II: Probing the inner edge
- Formation of Super-Earth Mass Planets at 125-250 AU from a Solar-type Star
- The secular evolution of the Kuiper belt after a close stellar encounter
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- Evidence for a Distant Giant Planet in the Solar System
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- Stability of Multiplanetary Systems in Star Clusters
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- New Extreme Trans-Neptunian Objects: Towards a Super-Earth in the Outer Solar System
- Planets In Young Massive Clusters: On the survivability of planets in young massive clusters and its implication of planet orbital architectures in globular clusters
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- Testing Gravity with wide binary stars like Centauri
- Interaction Cross Sections and Survival Rates for Proposed Solar System Member Planet Nine
- Stellar disk destruction by dynamical interactions in the Orion Trapezium star cluster
- The dynamical fate of planetary systems in young star clusters
- Is there an exoplanet in the Solar System?
- Outer solar system possibly shaped by a stellar fly-by
- OSSOS: V. Diffusion in the orbit of a high-perihelion distant Solar System object
- The signatures of the parental cluster on field planetary systems
- Galactic Tide and Local Stellar Perturbations on the Oort Cloud: Creation of Interstellar Comets
- Mass transfer between debris discs during close stellar encounters
- Trans-Neptunian objects found in the first four years of the Dark Energy Survey
- The fates of Solar system analogues with one additional distant planet
- How do disks and planetary systems in high-mass open clusters differ from those around field stars?
- Long-term orbital dynamics of trans-Neptunian objects
- The rate of stellar encounters along a migrating orbit of the Sun
- Oort cloud Ecology II: The chronology of the formation of the Oort cloud
- Making Planet Nine: A Scattered Giant in the Outer Solar System
- Making Planet Nine: Pebble Accretion at 250--750 AU in a Gravitationally Unstable Ring
- Effects of inclined star-disk encounter on protoplanetary disk size
- Study and application of the resonant secular dynamics beyond Neptune
- Cradle(s) of the Sun
- Significant interstellar object production by close stellar flybys
- Chaos in the inert Oort cloud
- Trajectory of the stellar flyby that shaped the outer solar system
- Evolution of circumstellar discs in young star-forming regions
- Finding Planet Nine: a Monte Carlo approach
- Finding Planet Nine: apsidal anti-alignment Monte Carlo results
- Perspectives on the distribution of orbits of distant Trans-Neptunian Objects
- Changes in orientation and shape of protoplanetary discs moving through an ambient medium
- A halo of trapped interstellar matter surrounding the solar system
- Inclination Excitation of Solar System Debris Disk due to Stellar Flybys
- Did a stellar fly-by shape the planetary system around Pr 0211 in the cluster M 44?
- Binary stripping as a plausible origin of correlated pairs of extreme trans-Neptunian objects
- DESTINY: Database for the Effects of STellar encounters on dIsks and plaNetary sYstems
- Influence of planets on debris disks in star clusters I: the 50 AU Jupiter
- Towards an explanation of orbits in the extreme trans-Neptunian region: The effect of Milgromian dynamics
- Oort Cloud Ecology. III. The Sun left the parent star cluster shortly after the giant planets formed
- Effects of capturing a wide-orbit planet on planetary systems: system stability and Habitable Zone bombardment rates
- Feasibility study of a mission to Sedna -- Nuclear propulsion and advanced solar sailing concepts
- Early Stellar Flybys are Unlikely: Improved Constraints from Sednoids and Large- TNOs
- Trans-Neptunian Space and the Post-Pluto Paradigm
- The Great Planetary Heist: Theft and capture in star-forming regions
- Implications for the formation of Oort cloud-like structures and interstellar comets in dense environments