Neptune on tiptoes: dynamical histories that preserve the cold classical Kuiper belt
arXiv:1112.1954 · doi:10.1088/0004-637X/746/2/171
Abstract
The current dynamical structure of the Kuiper belt was shaped by the orbital evolution of the giant planets, especially Neptune, during the era following planet formation, when the giant planets may have undergone planet-planet scattering and/or planetesimal-driven migration. Numerical simulations of this process, while reproducing many properties of the belt, fail to generate the high inclinations and eccentricities observed for some objects while maintaining the observed dynamically "cold" population. We present the first of a three-part parameter study of how different dynamical histories of Neptune sculpt the planetesimal disk. Here we identify which dynamical histories allow an in situ planetesimal disk to remain dynamically cold, becoming today's cold Kuiper belt population. We find that if Neptune undergoes a period of elevated eccentricity and/or inclination, it secularly excites the eccentricities and inclinations of the planetesimal disk. We demonstrate that there are several well-defined regimes for this secular excitation, depending on the relative timescales of Neptune's migration, the damping of Neptune's orbital inclination and/or eccentricity, and the secular evolution of the planetesimals. We model this secular excitation analytically in each regime, allowing for a thorough exploration of parameter space. Neptune's eccentricity and inclination can remain high for a limited amount of time without disrupting the cold classical belt. In the regime of slow damping and slow migration, if Neptune is located (for example) at 20 AU, then its eccentricity must stay below 0.18 and its inclination below 6°.
Accepted to ApJ. Update: Fixed typos in text and Appendix equations. Published as ApJ, 746, 171
References in corpus (5)
- Origin of the Structure of the Kuiper Belt during a Dynamical Instability in the Orbits of Uranus and Neptune
- Evidence for Two Populations of Classical Transneptunian Objects: The Strong Inclination Dependence of Classical Binaries
- High Albedos of Low Inclination Classical Kuiper Belt Objects
- Brownian Motion in Planetary Migration
- Color-Inclination Relation of the Classical Kuiper Belt Objects
Cited by in corpus (25)
- Dynamical Evolution of the Early Solar System
- The Evidence for Slow Migration of Neptune from the Inclination Distribution of Kuiper Belt Objects
- Neptune's Orbital Migration Was Grainy, Not Smooth
- Jumping Neptune Can Explain the Kuiper Belt Kernel
- Neptune's wild days: constraints from the eccentricity distribution of the classical Kuiper Belt
- Correlations between compositions and orbits established by the giant impact era of planet formation
- All planetesimals born near the Kuiper Belt formed as binaries
- OSSOS III - Resonant Trans-Neptunian Populations: Constraints from the first quarter of the Outer Solar System Origins Survey
- The Color Differences of Kuiper Belt Objects in Resonance with Neptune
- The Intrinsic Neptune Trojan Orbit Distribution: Implications for the Primordial Disk and Planet Migration
- Stability and Occurrence Rate Constraints on the Planetary Sculpting Hypothesis for "Transitional" Disks
- Forming Diverse Super-Earth Systems in Situ
- Precise transit and radial-velocity characterization of a resonant pair: a warm Jupiter TOI-216c and eccentric warm Neptune TOI-216b
- Not a simple relationship between Neptune's migration speed and Kuiper belt inclination excitation
- Chains of Planets in Mean Motion Resonances Arising from Oligarchic Growth
- Born extra-eccentric: A broad spectrum of primordial configurations of the gas giants that match their present-day orbits
- Linking the formation and fate of exo-Kuiper belts within solar system analogues
- Eccentric Early Migration of Neptune
- Oort cloud asteroids: Collisional evolution, the Nice Model, and the Grand Tack
- Dynamical Heating Induced by Dwarf Planets on Cold Kuiper Belt-like Debris Disks
- Multi-band Photometry of Trans-Neptunian Objects in the Subaru Hyper Suprime-Cam Survey
- The origin of Neptune's unusual satellites from a planetary encounter
- A systematic survey of the dynamics of Uranus Trojans
- The effect of orbital damping during planet migration on the Inclination and Eccentricity Distributions of Neptune Trojans
- The Rotational Light Curve of (79360) Sila-Nunam, an Eclipsing Binary in the Kuiper Belt