We calculate global $m=1$ modes with low pattern speed corresponding to introducing a finite eccentricity into a protoplanetary disc. We consider disc models which are either isolated or contain one or two protoplanets orbiting in an inner cavity. Global modes that are strongly coupled to inner protoplanets are found to have disc orbits which tend to have apsidal lines antialigned with respect to those of the inner protoplanets. Other modes corresponding to free disc modes may be global over a large range of length scales and accordingly be long lived. We consider the motion of a protoplanet in the earth mass range embedded in an eccentric disc and determine the equilibrium orbits which maintain fixed apsidal alignment with respect to the ...
Context. Orbital migration and gas accretion are two interdependent key processes that govern the ev...
Context. Theory predicts that low-mass protoplanets in a protostellar disc migrate into the central...
Context. The migration of planets plays an important role in the early planet-formation pr...
We calculate global $m=1$ modes with low pattern speed corresponding to introducing a finite eccentr...
Context.Theory predicts that low mass protoplanets in a laminar protostellar disc will migrate into ...
We formulate a set of linear equations that describe the behaviour of small eccentricities in a prot...
We present a new computation of the linear tidal interaction of a protoplanetary core with a thin ga...
We investigate the driving of orbital eccentricity of giant protoplanets and brown dwarfs through di...
Context. The formation of resonant planet pairs in exoplanetary systems involves planetary migration...
We study orbital evolution of multi-planet systems with masses in the terrestrial planet regime indu...
Abstract. The dynamical interactions that occur in newly formed plan-etary systems may reflect the c...
We investigate the origins of Kepler-419, a peculiar system hosting two nearly coplanar and highly e...
We consider two protoplanets gravitationally interacting with each other and a protoplanetary disc. ...
Context.Young planets embedded in their protoplanetary disk interact gravitationally with it leading...
We study the nonlinear evolution of global $m=1$ modes with low pattern speeds in a differentially ...
Context. Orbital migration and gas accretion are two interdependent key processes that govern the ev...
Context. Theory predicts that low-mass protoplanets in a protostellar disc migrate into the central...
Context. The migration of planets plays an important role in the early planet-formation pr...
We calculate global $m=1$ modes with low pattern speed corresponding to introducing a finite eccentr...
Context.Theory predicts that low mass protoplanets in a laminar protostellar disc will migrate into ...
We formulate a set of linear equations that describe the behaviour of small eccentricities in a prot...
We present a new computation of the linear tidal interaction of a protoplanetary core with a thin ga...
We investigate the driving of orbital eccentricity of giant protoplanets and brown dwarfs through di...
Context. The formation of resonant planet pairs in exoplanetary systems involves planetary migration...
We study orbital evolution of multi-planet systems with masses in the terrestrial planet regime indu...
Abstract. The dynamical interactions that occur in newly formed plan-etary systems may reflect the c...
We investigate the origins of Kepler-419, a peculiar system hosting two nearly coplanar and highly e...
We consider two protoplanets gravitationally interacting with each other and a protoplanetary disc. ...
Context.Young planets embedded in their protoplanetary disk interact gravitationally with it leading...
We study the nonlinear evolution of global $m=1$ modes with low pattern speeds in a differentially ...
Context. Orbital migration and gas accretion are two interdependent key processes that govern the ev...
Context. Theory predicts that low-mass protoplanets in a protostellar disc migrate into the central...
Context. The migration of planets plays an important role in the early planet-formation pr...