Integrated strong reciprocity enables productive punishment and protective defection

Fuente: arXiv
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Main Authors: Sasaki, Tatsuya, Uchida, Satochi
Format: Preprint
Published: 2026
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author Sasaki, Tatsuya
Uchida, Satochi
author_facet Sasaki, Tatsuya
Uchida, Satochi
contents Cooperation in large groups and one-shot interactions is often hindered by freeloading. Punishment can enforce cooperation, but it is usually regarded as wasteful because the costs of punishing offset its benefits. Here, we analyze an evolutionary game model that integrates upstream and downstream reciprocity with costly punishment: integrated strong reciprocity (ISR). We demonstrate that ISR admits a stable mixed equilibrium of ISR and unconditional defection (ALLD), and that costly punishment can become productive: When sufficiently efficient, it raises collective welfare above the no-punishment baseline. ALLD players persist as evolutionary shields, preventing invasion by unconditional cooperation (ALLC) or alternative conditional strategies (e.g., antisocial punishment). At the same time, the mixed equilibrium of ISR and ALLD remains robust under modest complexity costs that destabilize other symmetric cooperative systems.
format Preprint
id arxiv_https___arxiv_org_abs_2601_03681
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Integrated strong reciprocity enables productive punishment and protective defection
Sasaki, Tatsuya
Uchida, Satochi
Populations and Evolution
Computers and Society
Adaptation and Self-Organizing Systems
Physics and Society
Cooperation in large groups and one-shot interactions is often hindered by freeloading. Punishment can enforce cooperation, but it is usually regarded as wasteful because the costs of punishing offset its benefits. Here, we analyze an evolutionary game model that integrates upstream and downstream reciprocity with costly punishment: integrated strong reciprocity (ISR). We demonstrate that ISR admits a stable mixed equilibrium of ISR and unconditional defection (ALLD), and that costly punishment can become productive: When sufficiently efficient, it raises collective welfare above the no-punishment baseline. ALLD players persist as evolutionary shields, preventing invasion by unconditional cooperation (ALLC) or alternative conditional strategies (e.g., antisocial punishment). At the same time, the mixed equilibrium of ISR and ALLD remains robust under modest complexity costs that destabilize other symmetric cooperative systems.
title Integrated strong reciprocity enables productive punishment and protective defection
topic Populations and Evolution
Computers and Society
Adaptation and Self-Organizing Systems
Physics and Society
url https://arxiv.org/abs/2601.03681