A long-standing controversy in studies of spiral structure has concerned the lifetimes of individual spiral patterns. Much theoretical work has sought quasi-stationary spiral modes while N-body simulations have consistently displayed recurrent, short-lived patterns. The simulations manifest a recurrent cycle of true instabilities related to small-scale features in the angular momentum distribution of particles, with the decay of each instability seeding the growth of the next. Data from the recent Hipparcos mission seem to offer support for the recurrent transient picture
In the first part of this article, we review the observational evidence for spirals in the accretion...
The dynamics of stars and gas appear markedly different in flocculent, tidally induced and quasi-sta...
[[abstract]]We use hydrodynamic simulations to investigate the response of geometrically thin, self-...
We argue that self-excited instabilities are the cause of spiral patterns in simulations of unpertur...
We use N-body simulations to study the non-linear evolution of spontaneous and tidally induced spira...
The generation of transient spiral waves by swing-amplification in self-gravitating disks is now reg...
Spiral density wave theory attempts to describe the spiral pattern in spiral galaxies in terms of a ...
The causes of spiral structure in galaxies remain uncertain. Leaving aside the grand bisymmetric spi...
The lifetime of the structure in grand design spiral galaxies is observationally ill-determined, but...
We seek to understand the origin of radial migration in spiral galaxies by analysing in detail the s...
The dynamics of spiral galaxies is a gold-mine of challenging problems for the astrophysicist and th...
After almost fifty years the origin of spiral arms in disk galaxies remains one of the major unsolve...
The grand-design spiral galaxy M51 has long been a crucial target for theories of spiral structure. ...
We test whether the spiral patterns apparent in many large disk galaxies should be thought of as dyn...
At the intersection of galactic dynamics, evolution and global structure, unresolved issues in the n...
In the first part of this article, we review the observational evidence for spirals in the accretion...
The dynamics of stars and gas appear markedly different in flocculent, tidally induced and quasi-sta...
[[abstract]]We use hydrodynamic simulations to investigate the response of geometrically thin, self-...
We argue that self-excited instabilities are the cause of spiral patterns in simulations of unpertur...
We use N-body simulations to study the non-linear evolution of spontaneous and tidally induced spira...
The generation of transient spiral waves by swing-amplification in self-gravitating disks is now reg...
Spiral density wave theory attempts to describe the spiral pattern in spiral galaxies in terms of a ...
The causes of spiral structure in galaxies remain uncertain. Leaving aside the grand bisymmetric spi...
The lifetime of the structure in grand design spiral galaxies is observationally ill-determined, but...
We seek to understand the origin of radial migration in spiral galaxies by analysing in detail the s...
The dynamics of spiral galaxies is a gold-mine of challenging problems for the astrophysicist and th...
After almost fifty years the origin of spiral arms in disk galaxies remains one of the major unsolve...
The grand-design spiral galaxy M51 has long been a crucial target for theories of spiral structure. ...
We test whether the spiral patterns apparent in many large disk galaxies should be thought of as dyn...
At the intersection of galactic dynamics, evolution and global structure, unresolved issues in the n...
In the first part of this article, we review the observational evidence for spirals in the accretion...
The dynamics of stars and gas appear markedly different in flocculent, tidally induced and quasi-sta...
[[abstract]]We use hydrodynamic simulations to investigate the response of geometrically thin, self-...