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Software in the natural world: A computational approach to hierarchical emergence

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arxiv 2402.09090 v2 pith:LPWJQKQD submitted 2024-02-14 nlin.AO

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keywords computationalemergencemacroscopicprocessesapproachcomplexsoftwaresystems
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Understanding the functional architecture of complex systems is crucial to illuminate their inner workings and enable effective methods for their prediction and control. Recent advances have introduced tools to characterise emergent macroscopic levels; however, while these approaches are successful in identifying when emergence takes place, they are limited in the extent they can determine how it does. Here we address this limitation by developing a computational approach to emergence, which characterises macroscopic processes in terms of their computational capabilities. Concretely, we articulate a view on emergence based on how software works, which is rooted on a mathematical formalism that articulates how macroscopic processes can express self-contained informational, interventional, and computational properties. This framework establishes a hierarchy of nested self-contained processes that determines what computations take place at what level, which in turn delineates the functional architecture of a complex system. This approach is illustrated on paradigmatic models from the statistical physics and computational neuroscience literature, which are shown to exhibit macroscopic processes that are akin to software in human-engineered systems. Overall, this framework enables a deeper understanding of the multi-level structure of complex systems, revealing specific ways in which they can be efficiently simulated, predicted, and controlled.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. OpenAlex reports about 7 citations worldwide. Full citation record

  1. A "good regulator theorem" for embodied agents

    cs.AI 2025-08 accept novelty 6.0 of 10

    Every good regulator is equivalent, by construction, to an agent that an observer can interpret as holding a consistent possibilistic belief model of its environment.

  2. The many faces of multivariate information

    cs.IT 2026-01 conditional novelty 4.0 of 10

    Three well-known multivariate information measures are unified as members of a one-parameter family Δ^k, whose sign is claimed to track the order of dominant interactions.

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