Convergence to stationary solutions in a model of self-gravitating systems

Ignacio Guerra; Tadeusz Nadzieja

Colloquium Mathematicae (2003)

  • Volume: 98, Issue: 1, page 39-47
  • ISSN: 0010-1354

Abstract

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We study convergence of solutions to stationary states in an astrophysical model of evolution of clouds of self-gravitating particles.

How to cite

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Ignacio Guerra, and Tadeusz Nadzieja. "Convergence to stationary solutions in a model of self-gravitating systems." Colloquium Mathematicae 98.1 (2003): 39-47. <http://eudml.org/doc/284704>.

@article{IgnacioGuerra2003,
abstract = {We study convergence of solutions to stationary states in an astrophysical model of evolution of clouds of self-gravitating particles.},
author = {Ignacio Guerra, Tadeusz Nadzieja},
journal = {Colloquium Mathematicae},
keywords = {Chavanis-Sommeria-Robert model; mean field equations; drift-diffusion; energy-transport; Poisson equation; gravitational potential; Hopf maximum principle},
language = {eng},
number = {1},
pages = {39-47},
title = {Convergence to stationary solutions in a model of self-gravitating systems},
url = {http://eudml.org/doc/284704},
volume = {98},
year = {2003},
}

TY - JOUR
AU - Ignacio Guerra
AU - Tadeusz Nadzieja
TI - Convergence to stationary solutions in a model of self-gravitating systems
JO - Colloquium Mathematicae
PY - 2003
VL - 98
IS - 1
SP - 39
EP - 47
AB - We study convergence of solutions to stationary states in an astrophysical model of evolution of clouds of self-gravitating particles.
LA - eng
KW - Chavanis-Sommeria-Robert model; mean field equations; drift-diffusion; energy-transport; Poisson equation; gravitational potential; Hopf maximum principle
UR - http://eudml.org/doc/284704
ER -

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