Eccentric Keplerian discs are believed to be unstable to three-dimensional hydro-dynamical instabilities driven by the time-dependence of fluid properties around an orbit. These instabilities could lead to small-scale turbulence, and ultimately modify the global disc properties. We use a local model of an eccentric disc, derived in a companion paper, to compute the nonlinear vertical (“breathing mode”) oscillations of the disc. We then analyse their linear stability to locally axisymmetric disturbances for any disc eccentricity and eccentricity gradient using a numerical Floquet method. In the limit of small departures from a circular reference orbit, the instability of an isothermal disc is explained analytically. We also study analyticall...
We discuss the possibility that astrophysical accretion disks are dynamically unstable to non-axisy...
We carry out a general study of the stability of astrophysical flows that appear steady in a unifor...
We study the nonlinear evolution of global $m=1$ modes with low pattern speeds in a differentially ...
Eccentric Keplerian discs are believed to be unstable to three-dimensional hydrodynamical instabilit...
The nonlinear evolution of the parametric instability of inertial waves inherent to eccentric discs ...
Non-linear evolution of the parametric instability of inertial waves inherent to eccentric discs is ...
We formulate a local dynamical model of an eccentric disc in which the dominant motion consists of e...
Abstract. The nonlinear evolution of the vertical shear instability in accretion discs is investigat...
We perform global two-dimensional hydrodynamical simulations of Keplerian discs with free eccentrici...
We carry out a general study of the stability of astrophysical flows that appear steady in a uniform...
Highly supersonic, magnetized and differentially rotating, accretion flows provide an environment fo...
Tidally distorted accretion disks in binary star systems are subject to a local hy-drodynamic instab...
International audienceWe discuss the possibility that astrophysical accretion disks are dynamically ...
International audienceWe consider the hydrodynamic stability of homogeneous, incompressible and rota...
According to a previously published linear analysis, the tidal distortion of accretion disks in bina...
We discuss the possibility that astrophysical accretion disks are dynamically unstable to non-axisy...
We carry out a general study of the stability of astrophysical flows that appear steady in a unifor...
We study the nonlinear evolution of global $m=1$ modes with low pattern speeds in a differentially ...
Eccentric Keplerian discs are believed to be unstable to three-dimensional hydrodynamical instabilit...
The nonlinear evolution of the parametric instability of inertial waves inherent to eccentric discs ...
Non-linear evolution of the parametric instability of inertial waves inherent to eccentric discs is ...
We formulate a local dynamical model of an eccentric disc in which the dominant motion consists of e...
Abstract. The nonlinear evolution of the vertical shear instability in accretion discs is investigat...
We perform global two-dimensional hydrodynamical simulations of Keplerian discs with free eccentrici...
We carry out a general study of the stability of astrophysical flows that appear steady in a uniform...
Highly supersonic, magnetized and differentially rotating, accretion flows provide an environment fo...
Tidally distorted accretion disks in binary star systems are subject to a local hy-drodynamic instab...
International audienceWe discuss the possibility that astrophysical accretion disks are dynamically ...
International audienceWe consider the hydrodynamic stability of homogeneous, incompressible and rota...
According to a previously published linear analysis, the tidal distortion of accretion disks in bina...
We discuss the possibility that astrophysical accretion disks are dynamically unstable to non-axisy...
We carry out a general study of the stability of astrophysical flows that appear steady in a unifor...
We study the nonlinear evolution of global $m=1$ modes with low pattern speeds in a differentially ...