Observed self-gravitating systems reveal often fragmented, non-equilibrium structures that feature characteristic long-range correlations. However, models accounting for non-linear structure growth are not always consistent with observations and a better understanding of self-gravitating N-body systems appears necessary. Because unstable gravitating systems are sensitive to non-gravitational perturbations, we study the effect of different dissipative factors as well as different small and large scale boundary conditions on idealized N-body systems. We find, in the interval of negative specific heat, equilibrium properties differing from theoretical predictions made for gravo-thermal systems, substantiating the importance of micro...
Inspired by the statistical mechanics of an ensemble of interacting particles (BBGKY hierarchy), we ...
We study the mass-density distribution of Newtonian self-gravitating systems. Modeling the system as...
We present the results of an extensive series of high-performance simulations of the evolution of se...
Observed self-gravitating systems reveal often fragmented, non-equilibrium structures that feature ...
32 pages, 9 figures, chapter of the volume ``Dynamics and Thermodynamics of systems with long range ...
32 pages, 9 figures, chapter of the volume ``Dynamics and Thermodynamics of systems with long range ...
This work assembles some basic theoretical elements on thermal equilibrium, stability conditions, an...
Many physical systems are governed by long range interactions, the main example being self-gravitati...
AbstractLong-range attractive potentials cause self-gravitating N-body systems to exhibit not only c...
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 ...
We study the mass-density distribution of Newtonian self-gravitating systems. Modeling the system as...
We present the results of an extensive series of high-performance simulations of the evolution of se...
Observed self-gravitating systems reveal often fragmented, non-equilibrium structures that feature ...
32 pages, 9 figures, chapter of the volume ``Dynamics and Thermodynamics of systems with long range ...
32 pages, 9 figures, chapter of the volume ``Dynamics and Thermodynamics of systems with long range ...
This work assembles some basic theoretical elements on thermal equilibrium, stability conditions, an...
Many physical systems are governed by long range interactions, the main example being self-gravitati...
AbstractLong-range attractive potentials cause self-gravitating N-body systems to exhibit not only c...
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 ...
We study the mass-density distribution of Newtonian self-gravitating systems. Modeling the system as...
We present the results of an extensive series of high-performance simulations of the evolution of se...