The Theory of Strategic Evolution: Games with Endogenous Players and Strategic Replicators

Fuente: arXiv
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Main Author: Vallier, Kevin
Format: Preprint
Published: 2025
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author Vallier, Kevin
author_facet Vallier, Kevin
contents Von Neumann founded both game theory and the theory of self-reproducing automata, but the two programs never merged. This paper provides the synthesis. The Theory of Strategic Evolution analyzes strategic replicators: entities that optimize under resource constraints and spawn copies of themselves. We introduce Games with Endogenous Players (GEPs), where lineages (not instances) are the fundamental strategic units, and define Evolutionarily Stable Distributions of Intelligence (ESDIs) as the resulting equilibrium concept. The central mathematical object is a hierarchy of strategic layers linked by cross-level gain matrices. Under a small-gain condition (spectral radius less than one), the system admits a global Lyapunov function at every finite depth. We prove closure under meta-selection: adding governance levels, innovation, or constitutional evolution preserves the dynamical structure. The Alignment Impossibility Theorem shows that unrestricted self-modification destroys this structure; stable alignment requires bounded modification classes. Applications include AI deployment dynamics, market concentration, and institutional design. The framework shows why personality engineering fails under selection pressure and identifies constitutional constraints necessary for stable multi-agent systems.
format Preprint
id arxiv_https___arxiv_org_abs_2512_07901
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle The Theory of Strategic Evolution: Games with Endogenous Players and Strategic Replicators
Vallier, Kevin
Computer Science and Game Theory
Artificial Intelligence
Theoretical Economics
91A22, 91A80, 91B55, 37N25
Von Neumann founded both game theory and the theory of self-reproducing automata, but the two programs never merged. This paper provides the synthesis. The Theory of Strategic Evolution analyzes strategic replicators: entities that optimize under resource constraints and spawn copies of themselves. We introduce Games with Endogenous Players (GEPs), where lineages (not instances) are the fundamental strategic units, and define Evolutionarily Stable Distributions of Intelligence (ESDIs) as the resulting equilibrium concept. The central mathematical object is a hierarchy of strategic layers linked by cross-level gain matrices. Under a small-gain condition (spectral radius less than one), the system admits a global Lyapunov function at every finite depth. We prove closure under meta-selection: adding governance levels, innovation, or constitutional evolution preserves the dynamical structure. The Alignment Impossibility Theorem shows that unrestricted self-modification destroys this structure; stable alignment requires bounded modification classes. Applications include AI deployment dynamics, market concentration, and institutional design. The framework shows why personality engineering fails under selection pressure and identifies constitutional constraints necessary for stable multi-agent systems.
title The Theory of Strategic Evolution: Games with Endogenous Players and Strategic Replicators
topic Computer Science and Game Theory
Artificial Intelligence
Theoretical Economics
91A22, 91A80, 91B55, 37N25
url https://arxiv.org/abs/2512.07901