Nonextensive Statistical Mechanics: Some Links with Astronomical Phenomena

被引:0
作者
Constantino Tsallis
Constantino Tsallis
Domingo Prato
Angel R. Plastino
Angel R. Plastino
机构
[1] Centro Brasileiro de Pesquisas Físicas,Facultad de Matematica, Astronomia y Fisica
[2] Santa Fe Institute,Facultad de Ciencias Astronomicas y Geofisicas
[3] Universidad Nacional de Cordoba,Departament de Fisica
[4] Universidad Nacional de La Plata and CONICET,undefined
[5] Universitat de les Illes Balears,undefined
来源
Astrophysics and Space Science | 2004年 / 290卷
关键词
nonextensive statistical mechanics; Tsallis entropy; solar neutrino problem; cosmic rays; polytropes;
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学科分类号
摘要
A variety of astronomical phenomena appear to not satisfy the ergodic hypothesis in the relevant stationary state, if any. As such, there is no reason for expecting the applicability of Boltzmann–Gibbs (BG) statistical mechanics. Some of these phenomena appear to follow, instead, nonextensive statistical mechanics. In the same manner that the BG formalism is based on the entropy SBG=−k∑ipi ln pi, the nonextensive one is based on the form Sq=k(1 −∑ipiq)/(q− 1) (with S1=SBG). The stationary states of the former are characterized by an exponential dependence on the energy, whereas those of the latter are characterized by an (asymptotic) power law. A brief review of this theory is given here, as well as of some of its applications, such as the solar neutrino problem, polytropic self-gravitating systems, galactic peculiar velocities, cosmic rays and some cosmological aspects. In addition to these, an analogy with the Keplerian elliptic orbits versus the Ptolemaic epicycles is developed, where we show that optimizing Sq with a few constraints is equivalent to optimizing SBG with an infinite number of constraints.
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页码:259 / 274
页数:15
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