activity
20022026
most citedOn the tidal evolution of Hot Jupiters on inclined orbits

259 citations · 375 across the 16 of their papers we have counts for

collaborators
Showing astro-phShow all

7 papers · 1 filter

astro-ph2006★ 46 cited

On self-sustaining processes in Rayleigh-stable rotating plane Couette flows and subcritical transition to turbulence in accretion disks

F. Rincon, G. I. Ogilvie, C. Cossu

Subcritical transition to turbulence in Keplerian accretion disks is still a controversial issue and some theoretical progress is required in order to determine whether or not this…

astro-ph2006★ 25 cited

The effect of planetary migration on the corotation resonance

G. I. Ogilvie, S. H. Lubow

The migration of a planet through a gaseous disc causes the locations of their resonant interactions to drift and can alter the torques exerted between the planet and the disc. We…

astro-ph2005

Nonlinear bending waves in Keplerian accretion discs

G. I. Ogilvie

The nonlinear dynamics of a warped accretion disc is investigated in the important case of a thin Keplerian disc with negligible viscosity and self-gravity. A one-dimensional evolu…

astro-ph2005

Aligning spinning black holes and accretion discs

A. R. King, S. H. Lubow, G. I. Ogilvie +1

We consider the alignment torque between a spinning black hole and an accretion disc whose angular momenta are misaligned. This situation must hold initially in almost all gas accr…

astro-ph2003

Tidal dissipation in rotating giant planets

G. I. Ogilvie, D. N. C. Lin

[Abridged] Tides may play an important role in determining the observed distributions of mass, orbital period, and eccentricity of the extrasolar planets. In addition, tidal intera…

astro-ph2003

Three-dimensional Calculations of High and Low-mass Planets Embedded in Protoplanetary Discs

M. R. Bate, S. H. Lubow, G. I. Ogilvie +1

We analyse the non-linear, three-dimensional response of a gaseous, viscous protoplanetary disc to the presence of a planet of mass ranging from one Earth mass (1 M) to one Jup…