Adopting Schwarzschild's orbit-superposition technique, we construct a series of self-consistent galaxy models, embedded in the external field of galaxy clusters in the framework of Milgrom's MOdified Newtonian Dynamics (MOND). These models represent relatively massive ellipticals with a Hernquist radial profile at various distances from the cluster center. Using N-body simulations, we perform a first analysis of these models and their evolution. We find that self-gravitating axisymmetric density models, even under a weak external field, lose their symmetry by instability and generally evolve to triaxial configurations. A kinematic analysis suggests that the instability originates from both box and nonclassified orbits with low angular mome...
We study the dynamics of particles in closed orbits in a galactic disk perturbed by a lopsided halo ...
International audienceModified Newtonian dynamics (MOND) is a possible way to explain the flat galax...
In recent years, an exceptional progress has exposed a great deal of information about the formation...
International audienceAdopting Schwarzschild’s orbit-superposition technique, we construct a series ...
Funding: An early stage of this work has been performed under the Project HPC-EUROPA (211437), with ...
We point out an interesting theoretical prediction for elliptical galaxies residing inside galaxy cl...
Lopsidedness is common in spiral galaxies. Often, there is no obvious external cause, such as an int...
International audienceWe present an implementation of the Schwarzschild orbit superposition method, ...
Lopsidedness is common in spiral galaxies. Often, there is no obvious external cause, such as an int...
Galaxies are natural laboratories for testing fundamental physics on the nature of the dark matter. ...
The stability of radially anisotropic spherical stellar systems in modified Newtonian dynamics (MOND...
Disc galaxies commonly show asymmetric features in their morphology, such as warps and lopsidedness....
The modified Newtonian dynamics (MOND), suggested by Milgrom as an alternative to dark matter, impli...
The Bekenstein- Milgrom gravity theory with a modified Poisson equation is tested here for the exist...
The self-binding energy and stability of a galaxy in MOND-based gravity are curiously decreasing fun...
We study the dynamics of particles in closed orbits in a galactic disk perturbed by a lopsided halo ...
International audienceModified Newtonian dynamics (MOND) is a possible way to explain the flat galax...
In recent years, an exceptional progress has exposed a great deal of information about the formation...
International audienceAdopting Schwarzschild’s orbit-superposition technique, we construct a series ...
Funding: An early stage of this work has been performed under the Project HPC-EUROPA (211437), with ...
We point out an interesting theoretical prediction for elliptical galaxies residing inside galaxy cl...
Lopsidedness is common in spiral galaxies. Often, there is no obvious external cause, such as an int...
International audienceWe present an implementation of the Schwarzschild orbit superposition method, ...
Lopsidedness is common in spiral galaxies. Often, there is no obvious external cause, such as an int...
Galaxies are natural laboratories for testing fundamental physics on the nature of the dark matter. ...
The stability of radially anisotropic spherical stellar systems in modified Newtonian dynamics (MOND...
Disc galaxies commonly show asymmetric features in their morphology, such as warps and lopsidedness....
The modified Newtonian dynamics (MOND), suggested by Milgrom as an alternative to dark matter, impli...
The Bekenstein- Milgrom gravity theory with a modified Poisson equation is tested here for the exist...
The self-binding energy and stability of a galaxy in MOND-based gravity are curiously decreasing fun...
We study the dynamics of particles in closed orbits in a galactic disk perturbed by a lopsided halo ...
International audienceModified Newtonian dynamics (MOND) is a possible way to explain the flat galax...
In recent years, an exceptional progress has exposed a great deal of information about the formation...