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Quantifying emergent complexity
1Allen Discovery Center, Tufts University, Medford, MA, USA.
Patterns (New York, N.Y.)
|January 26, 2026
Summary
This study introduces a new theory of emergence to identify scales that irreducibly contribute to complex system causality. It reveals a novel measure of emergent complexity based on causal distribution across scales.
Area of Science:
- Complex Systems Science
- Theoretical Physics
- Information Theory
Background:
- Complex systems exhibit multiscale causal structures, from microphysics to macroeconomics.
- The added value of macroscale descriptions beyond data compression is debated.
- Understanding irreducible causal contributions across scales is crucial for systems science.
Purpose of the Study:
- To introduce a new theory of emergence capable of distinguishing scales with irreducible causal contributions.
- To resolve the debate on the functional role of macroscales in complex systems.
- To develop a novel measure for emergent complexity.
Main Methods:
- Developed a new theoretical framework for emergence.
- Applied the theory to coarse-grained Markov chains.
- Quantified causal contributions across a hierarchy of scales.
Main Results:
- Introduced a novel theory distinguishing scales with irreducible causal influence.
- Demonstrated the theory's application using Markov chains.
- Revealed a new measure of emergent complexity: the distribution of causal contributions across scales.
Conclusions:
- The new theory provides a rigorous method to identify essential scales in complex systems.
- Emergent complexity can be quantified by the breadth of causal influence distribution.
- This framework advances our understanding of multiscale causality and system organization.
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