The features of the fundamental thermodynamical relation (expressing entropy as function of state variables) that arise from the self-gravitating character of a system are analyzed. The models studied include not only a spherically symmetric hot matter shell with constant particle number but also a black hole characterized by a general thermal equation of state. These examples illustrate the formal structure of thermodynamics developed by Callen as applied to a gravitational configuration as well as the phenomenological manner in which Einstein equations largely determine the thermodynamical equations of state. We consider in detail the thermodynamics and quasi-static collapse of a self-gravitating shell. This includes a discussion of intri...
We complete our previous investigations concerning the structure and the stability of “isothermal” ...
In the present paper we consider, using our earlier results, the process of quantum gravitational co...
The statistical mechanics of collisionless self-gravitating systems is a longstanding puzzle, which ...
Our previous works have shown the statistical mechanics of self-gravitating system. In this paper, w...
This work assembles some basic theoretical elements on thermal equilibrium, stability conditions, an...
© 2015 American Physical Society. A static self-gravitating electrically charged spherical thin shel...
We propose an approach to find out when a self-gravitating system is in a quasi-equilibrium state. T...
AbstractA thermodynamical description for the quasi-static collapse of radiating, self-gravitating s...
The entropy of a spherically symmetric distribution of matter in self-equilibrium is calculated. Whe...
A new approach based on the nonequilibrium statistical operator is presented that makes it possible ...
It is shown, that self-gravitating systems can be classified by a dimensionless constant positive nu...
A slightly extended version, with a footnote added on December 19, 1997, of a contributed Abstract t...
Foundational puzzles surround (Newtonian) gravitational thermal physics — a realm in which stars are...
We analyze the thermodynamical properties of the regular static and spherically symmetric black hole...
33 pages, 16 figures, Lecture given at the 7th. Paris Cosmology Colloquium, Observatoire de Paris, J...
We complete our previous investigations concerning the structure and the stability of “isothermal” ...
In the present paper we consider, using our earlier results, the process of quantum gravitational co...
The statistical mechanics of collisionless self-gravitating systems is a longstanding puzzle, which ...
Our previous works have shown the statistical mechanics of self-gravitating system. In this paper, w...
This work assembles some basic theoretical elements on thermal equilibrium, stability conditions, an...
© 2015 American Physical Society. A static self-gravitating electrically charged spherical thin shel...
We propose an approach to find out when a self-gravitating system is in a quasi-equilibrium state. T...
AbstractA thermodynamical description for the quasi-static collapse of radiating, self-gravitating s...
The entropy of a spherically symmetric distribution of matter in self-equilibrium is calculated. Whe...
A new approach based on the nonequilibrium statistical operator is presented that makes it possible ...
It is shown, that self-gravitating systems can be classified by a dimensionless constant positive nu...
A slightly extended version, with a footnote added on December 19, 1997, of a contributed Abstract t...
Foundational puzzles surround (Newtonian) gravitational thermal physics — a realm in which stars are...
We analyze the thermodynamical properties of the regular static and spherically symmetric black hole...
33 pages, 16 figures, Lecture given at the 7th. Paris Cosmology Colloquium, Observatoire de Paris, J...
We complete our previous investigations concerning the structure and the stability of “isothermal” ...
In the present paper we consider, using our earlier results, the process of quantum gravitational co...
The statistical mechanics of collisionless self-gravitating systems is a longstanding puzzle, which ...