Generalized entropies, density of states, and non-extensivity

Author:

Balogh Sámuel G.,Palla Gergely,Pollner Péter,Czégel Dániel

Abstract

AbstractThe concept of entropy connects the number of possible configurations with the number of variables in large stochastic systems. Independent or weakly interacting variables render the number of configurations scale exponentially with the number of variables, making the Boltzmann–Gibbs–Shannon entropy extensive. In systems with strongly interacting variables, or with variables driven by history-dependent dynamics, this is no longer true. Here we show that contrary to the generally held belief, not only strong correlations or history-dependence, but skewed-enough distribution of visiting probabilities, that is, first-order statistics, also play a role in determining the relation between configuration space size and system size, or, equivalently, the extensive form of generalized entropy. We present a macroscopic formalism describing this interplay between first-order statistics, higher-order statistics, and configuration space growth. We demonstrate that knowing any two strongly restricts the possibilities of the third. We believe that this unified macroscopic picture of emergent degrees of freedom constraining mechanisms provides a step towards finding order in the zoo of strongly interacting complex systems.

Funder

European Union

Publisher

Springer Science and Business Media LLC

Subject

Multidisciplinary

Reference49 articles.

1. Thurner, S., Klimek, P. & Hanel, R. Introduction to the Theory of Complex Systems (Oxford University Press, Oxford, 2018).

2. Tsallis, C. Introduction to Nonextensive Statistical Mechanics (Springer, New York, 2009).

3. Tsallis, C. Beyond Boltzmann–Gibbs–Shannon in physics and elsewhere. Entropy 21, 696 (2019).

4. Tsallis, C. Some open points in nonextensive statistical mechanics. Int. J. Bifurc. Chaos 22, 1230030 (2012).

5. Bar-Yam, Y. & Bialik, M. Beyond Big Data: Identifying Important Information for Real World Challenges (NECSI, Cambridge, 2013).

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