Dissipationless collapses in Modified Newtonian Dynamics (MOND) are studied by using a new particle-mesh N-body code based on our numerical MOND potential solver. We found that low surface-density end-products have shallower inner density profile, flatter radial velocity-dispersion profile, and more radially anisotropic orbital distribution than high surface-density end-products. The projected density profiles of the final virialized systems are well described by Sersic profiles with index m~4, down to m~2 for a deep-MOND collapse. Consistently with observations of elliptical galaxies, the MOND end-products, if interpreted in the context of Newtonian gravity, would appear to have little or no dark matter within the effective radius. However...
It is well known that the application of Newtonian dynamics to an expanding spherical region leads t...
The stability of radially anisotropic spherical stellar systems in modified Newtonian dynamics (MOND...
In this thesis Modified Newtonian Dynamics (MOND) is explored in galaxy clusters similar to the Virg...
Dissipationless collapses in Modified Newtonian Dynamics (MOND) have been studied by using our MOND ...
Beginning with a simple model for the growth of structure, I consider the dissipationless evolution ...
Funding: MB and HSZ are thankful for the financial support by Cercle Gutenberg. MB acknowledges the ...
Context. Deur (2014) and Winters et al. (2023) proposed an empirical relation between the dark to to...
General analytic arguments lead us to expect that in the modified dynamics (MOND) self-gravitating d...
We compare N-body simulations of isolated galaxies performed in both frameworks of modified Newtonia...
Submitted to: Mon. Not. R. Astron. Soc. Abstract: The modified Newtonian dynamics (MOND), suggested ...
A proper test of Modified Newtonian Dynamics (MOND) in systems of non-trivial geometries depends on ...
We study the evolution of a spherically symmetric density perturbation in the Modified Newtonian Dyn...
I consider the growth of inhomogeneities in a low-density baryonic, vacuum energy-dominated universe...
The cold dark matter paradigm has been extremely successful for explaining a wide range of cosmologi...
Modified Newtonian dynamics (MOND) is an alternative theory of gravity that aims to explain large-sc...
It is well known that the application of Newtonian dynamics to an expanding spherical region leads t...
The stability of radially anisotropic spherical stellar systems in modified Newtonian dynamics (MOND...
In this thesis Modified Newtonian Dynamics (MOND) is explored in galaxy clusters similar to the Virg...
Dissipationless collapses in Modified Newtonian Dynamics (MOND) have been studied by using our MOND ...
Beginning with a simple model for the growth of structure, I consider the dissipationless evolution ...
Funding: MB and HSZ are thankful for the financial support by Cercle Gutenberg. MB acknowledges the ...
Context. Deur (2014) and Winters et al. (2023) proposed an empirical relation between the dark to to...
General analytic arguments lead us to expect that in the modified dynamics (MOND) self-gravitating d...
We compare N-body simulations of isolated galaxies performed in both frameworks of modified Newtonia...
Submitted to: Mon. Not. R. Astron. Soc. Abstract: The modified Newtonian dynamics (MOND), suggested ...
A proper test of Modified Newtonian Dynamics (MOND) in systems of non-trivial geometries depends on ...
We study the evolution of a spherically symmetric density perturbation in the Modified Newtonian Dyn...
I consider the growth of inhomogeneities in a low-density baryonic, vacuum energy-dominated universe...
The cold dark matter paradigm has been extremely successful for explaining a wide range of cosmologi...
Modified Newtonian dynamics (MOND) is an alternative theory of gravity that aims to explain large-sc...
It is well known that the application of Newtonian dynamics to an expanding spherical region leads t...
The stability of radially anisotropic spherical stellar systems in modified Newtonian dynamics (MOND...
In this thesis Modified Newtonian Dynamics (MOND) is explored in galaxy clusters similar to the Virg...