Primordial Evolution in the Finitary Process Soup

Olof Görnerup
Complex Systems Group, Department of Energy and Environment
Chalmers University of Technology and Göteborg University
412 96 Göteborg, SWEDEN

James P. Crutchfield
Center for Computational Science and Engineering
Physics Department
One Shields Avenue
University of California, Davis
Davis, CA 95616, USA

ABSTRACT: A general and basic model of primordial evolution—a soup of reacting finitary and discrete processes—is employed to identify and analyze fundamental mechanisms that generate and maintain complex structures in prebiotic systems. The processes—ε-machines as defined in computational mechanics—and their interaction networks both provide well defined notions of structure. This enables us to quantitatively demonstrate hierarchical self-organization in the soup in terms of complexity. We found that replicating processes evolve the strategy of successively building higher levels of organization by autocatalysis. Moreover, this is facilitated by local components that have low structural complexity, but high generality. In effect, the finitary process soup spontaneously evolves a selection pressure that favors such components. In light of the finitary process soup's generality, these results suggest a fundamental law of hierarchical systems: global complexity requires local simplicity.


Olof Görnerup and J. P. Crutchfield, "Primordial Evolution in the Finitary Process Soup", Electronic Journal of Theoretical Physics 4:16I (2007) 297-311.
Reprinted in Physics of Emergence and Organization, Eds. I. Licata and A. Sakaji, World Scientific (New Jersey, 2008) 297-311.
[pdf] 478 kB
Santa Fe Institute Working Paper: 07-05-008.
arxiv.org: q-bio.PE/0704.3771.