Some Non-Obvious Consequences of Non-Extensiveness of Entropy

Author:

Wilk Grzegorz1ORCID,Włodarczyk Zbigniew2ORCID

Affiliation:

1. National Centre for Nuclear Research, Department of Fundamental Research, 02-093 Warsaw, Poland

2. Institute of Physics, Jan Kochanowski University, 25-406 Kielce, Poland

Abstract

Non-additive (or non-extensive) entropies have long been intensively studied and used in various fields of scientific research. This was due to the desire to describe the commonly observed quasi-power rather than the exponential nature of various distributions of the variables of interest when considered in the full available space of their variability. In this work we will concentrate on the example of high energy multiparticle production processes and will limit ourselves to only one form of non-extensive entropy, namely the Tsallis entropy. We will discuss some points not yet fully clarified and present some non-obvious consequences of non-extensiveness of entropy when applied to production processes.

Funder

Polish Ministry of Education and Science

Publisher

MDPI AG

Subject

General Physics and Astronomy

Reference52 articles.

1. Kittel, W., and De Wolf, E.A. (2005). Multihadron Dynamics, World Scientific.

2. Schlögl, F. (1989). Probability and Heat—Fundamentals of Thermostatistics, Springer Fachmedien Wiesbaden GmbH.

3. Biró, T.S. (2011). Is there a Temperature? Conceptual Challenges at High Energy, Acceleration and Complexity, Springer.

4. Arndt, C. (2001). Information Measures—Information and its Description in Science and Engineering, Springer.

5. Tsallis, C. (2009). Introduction to Nonextensive Statistical Mechanics, Springer.

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