High-eccentricity migration — where it appears
Named by 3 essays across 2 fields — each of them below, with the objects they name alongside it.
An inclination that turns into an eccentricity
A distant companion cannot change an orbit's size or its energy. It can take a circular orbit tilted past 39.23 degrees and drive it to an eccentricity near one, and back, over and over — and the companion's mass and distance set only the clock.
The precession that switches the cycle off
A distant companion can trade an orbit's inclination for its eccentricity, over and over, and drive a pericentre almost onto the central body. General relativity's own precession competes with the mechanism for the same pericentre, and when it wins the cycle stops — sharply, at a ratio of one, which puts a floor on how close anything can be delivered.
A misalignment only cool stars forget
A third of hot Jupiters orbit at a large angle to their star's equator, and some go round backwards. Sort the same planets by the temperature of their host and the picture changes — below about 6,250 kelvin almost all are aligned, and above it almost none are. The boundary is not about the planets.
Named alongside it
The objects these essays reach for when they reach for this one.
Kozai lidov mechanismApsidal precessionHierarchical tripleHot jupiterSecular perturbationAdiabatic invariantConvective envelopeCritical inclinationDisc migrationEccentricityEquilibrium tideGeneral relativity