Collisions between galaxies can induce large morphological changes in the participants and, in the case of colliding disk galaxies, bridges and tails are often formed. Observations of such systems indicate a wide variation in color (see Larson and Tinsley, 1978) and that some of the particpants are experiencing enhanced rates of star formation, especially in their central regions (Bushouse 1986, 1987; Kennicutt et al., 1987, Bushouse, Lamb, and Werner, 1988). Here the authors describe progress made in understanding some of the dynamics of interacting galaxies using N-body stellar dynamical computer experiments, with the goal of extending these models to include a hydrodynamical treatment of the gas so that a better understanding of globally...
Galaxy merging is an important process in galaxy formation and evolution throughout the cosmic time....
To better understand the role that interactions between galaxies plays in their overall evolution re...
We propose a physical mechanism to explain the origin of the intense burst of massive-star formation...
We investigate the detailed response of gas to the formation of transient and long-lived dynamical s...
The development of ring and arc structure due to the collision of a spherical galaxy normal to the p...
A companion can induce a variety of morphological changes in a galaxy. The author uses N-body simula...
Colliding galaxies are excellent laboratories for studying galactic evolution and global star format...
A series of one and two dimensional hydrodynamic simulations of a ring wave in interstellar gas disk...
fWe have developed GALAXY, a two dimensional, self-consistent N-body plus hydro-dynamic computer pro...
We investigate the enhancement of star formation efficiency in galaxy interactions and mergers, by n...
Using N-body and SPH modeling we perform 3D numerical simulations of head-on collisions between gas ...
Using numerical simulation, we study the development of gaseous inflows and triggering of starburst ...
International audienceWe investigate the enhancement of star formation efficiency in galaxy interact...
We investigate the enhancement of star formation efficiency in galaxy interactions and mergers by nu...
We investigate the enhancement of star formation efficiency in galaxy interactions and mergers by nu...
Galaxy merging is an important process in galaxy formation and evolution throughout the cosmic time....
To better understand the role that interactions between galaxies plays in their overall evolution re...
We propose a physical mechanism to explain the origin of the intense burst of massive-star formation...
We investigate the detailed response of gas to the formation of transient and long-lived dynamical s...
The development of ring and arc structure due to the collision of a spherical galaxy normal to the p...
A companion can induce a variety of morphological changes in a galaxy. The author uses N-body simula...
Colliding galaxies are excellent laboratories for studying galactic evolution and global star format...
A series of one and two dimensional hydrodynamic simulations of a ring wave in interstellar gas disk...
fWe have developed GALAXY, a two dimensional, self-consistent N-body plus hydro-dynamic computer pro...
We investigate the enhancement of star formation efficiency in galaxy interactions and mergers, by n...
Using N-body and SPH modeling we perform 3D numerical simulations of head-on collisions between gas ...
Using numerical simulation, we study the development of gaseous inflows and triggering of starburst ...
International audienceWe investigate the enhancement of star formation efficiency in galaxy interact...
We investigate the enhancement of star formation efficiency in galaxy interactions and mergers by nu...
We investigate the enhancement of star formation efficiency in galaxy interactions and mergers by nu...
Galaxy merging is an important process in galaxy formation and evolution throughout the cosmic time....
To better understand the role that interactions between galaxies plays in their overall evolution re...
We propose a physical mechanism to explain the origin of the intense burst of massive-star formation...