Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we propose to account for small-scale inhomogeneities in self-gravitating astrophysical fluids by deriving a non-ideal Virial theorem and non-ideal Navier-Stokes equations using a decomposition of the gravitational force into a near- and far-field component. These equations involve the pair radial distribution function (similar to the two-point correlation function), similarly to the interaction energy and equation of state in liquids. Small-scale correlations lead to a non-ideal amplification of the gravitational interaction energy, whose omission leads to a missing mass problem, e.g., in galaxies and galaxy clusters. We also propose an extensi...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
Aims. Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy...
Aims. Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
Aims. Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy...
Aims. Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...
International audienceAims. Inspired by the statistical mechanics of an ensemble of interacting part...