skip to main content
OSTI.GOV title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: MIGRATION OF GAS GIANT PLANETS IN GRAVITATIONALLY UNSTABLE DISKS

Journal Article · · Astrophysical Journal Letters
;  [1]
  1. Department of Astronomy, Indiana University, Bloomington, IN 47405 (United States)

Characterization of migration in gravitationally unstable disks is necessary to understand the fate of protoplanets formed by disk instability. As part of a larger study, we are using a three-dimensional radiative hydrodynamics code to investigate how an embedded gas giant planet interacts with a gas disk that undergoes gravitational instabilities (GIs). This Letter presents results from simulations with a Jupiter-mass planet placed in orbit at 25 AU within a 0.14 M{sub sun} disk. The disk spans 5-40 AU around a 1 M{sub sun} star and is initially marginally unstable. In one simulation, the planet is inserted prior to the eruption of GIs; in another, it is inserted only after the disk has settled into a quasi-steady GI-active state, where heating by GIs roughly balances radiative cooling. When the planet is present from the beginning, its own wake stimulates growth of a particular global mode with which it strongly interacts, and the planet plunges inward 6 AU in about 10{sup 3} years. In both cases with embedded planets, there are times when the planet's radial motion is slow and varies in direction. At other times, when the planet appears to be interacting with strong spiral modes, migration both inward and outward can be relatively rapid, covering several AUs over hundreds of years. Migration in both cases appears to stall near the inner Lindblad resonance of a dominant low-order mode. Planet orbit eccentricities fluctuate rapidly between about 0.02 and 0.1 throughout the GI-active phases of the simulations.

OSTI ID:
21562461
Journal Information:
Astrophysical Journal Letters, Vol. 737, Issue 2; Other Information: DOI: 10.1088/2041-8205/737/2/L42; ISSN 2041-8205
Country of Publication:
United States
Language:
English

Similar Records

ORBITAL MIGRATION OF PROTOPLANETS IN A MARGINALLY GRAVITATIONALLY UNSTABLE DISK
Journal Article · Wed Feb 20 00:00:00 EST 2013 · Astrophysical Journal · OSTI ID:21562461

The Role of Early Giant-planet Instability in Terrestrial Planet Formation
Journal Article · Mon Feb 01 00:00:00 EST 2021 · The Astronomical Journal (Online) · OSTI ID:21562461

Retention of Long-period Gas Giant Planets: Type II Migration Revisited
Journal Article · Mon Aug 31 00:00:00 EDT 2020 · The Astrophysical Journal (Online) · OSTI ID:21562461