Statistical mechanics of exploding phase spaces: Ontic open systems
Abstract
The volume of phase space may grow super-exponentially ("explosively") with the number of degrees of freedom for certain types of complex systems such as those encountered in biology and neuroscience, where components interact and create new emergent states. Standard ensemble theory can break down as we demonstrate in a simple model reminiscent of complex systems where new collective states emerge. We present an axiomatically defined entropy and argue that it is extensive in the micro-canonical, equal probability, and canonical (max-entropy) ensemble for super-exponentially growing phase spaces. This entropy may be useful in determining probability measures in analogy with how statistical mechanics establishes statistical ensembles by maximising entropy.
Cite
@article{arxiv.1609.02065,
title = {Statistical mechanics of exploding phase spaces: Ontic open systems},
author = {Henrik Jeldtoft Jensen and Roozbeh H. Pazuki and Gunnar Pruessner and Piergiulio Tempesta},
journal= {arXiv preprint arXiv:1609.02065},
year = {2018}
}
Comments
18 pages, 1 figure. This version is significantly expanded and improved as a result of referee comments. This is the manuscript accepted for publication in J Phys A