Density and Affinity Dependent Social Segregation and Arbitrage Equilibrium in a Multi-class Schelling Game

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Hauptverfasser: Venkatasubramanian, Venkat, Shi, Jessica, Goldman, Leo, M., Arun Sankar E., Sivaram, Abhishek
Format: Preprint
Veröffentlicht: 2024
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author Venkatasubramanian, Venkat
Shi, Jessica
Goldman, Leo
M., Arun Sankar E.
Sivaram, Abhishek
author_facet Venkatasubramanian, Venkat
Shi, Jessica
Goldman, Leo
M., Arun Sankar E.
Sivaram, Abhishek
contents Contrary to the widely believed hypothesis that larger, denser cities promote socioeconomic mixing, a recent study (Nilforoshan et al. 2023) reports the opposite behavior, i.e. more segregation. Here, we present a game-theoretic model that predicts such a density-dependent segregation outcome in both one- and two-class systems. The model provides key insights into the analytical conditions that lead to such behavior. Furthermore, the arbitrage equilibrium outcome implies the equality of effective utilities among all agents. This could be interpreted as all agents being equally "happy" in their respective environments in our ideal society. We believe that our model contributes towards a deeper mathematical understanding of social dynamics and behavior, which is important as we strive to develop more harmonious societies.
format Preprint
id arxiv_https___arxiv_org_abs_2403_04084
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Density and Affinity Dependent Social Segregation and Arbitrage Equilibrium in a Multi-class Schelling Game
Venkatasubramanian, Venkat
Shi, Jessica
Goldman, Leo
M., Arun Sankar E.
Sivaram, Abhishek
Physics and Society
Multiagent Systems
Contrary to the widely believed hypothesis that larger, denser cities promote socioeconomic mixing, a recent study (Nilforoshan et al. 2023) reports the opposite behavior, i.e. more segregation. Here, we present a game-theoretic model that predicts such a density-dependent segregation outcome in both one- and two-class systems. The model provides key insights into the analytical conditions that lead to such behavior. Furthermore, the arbitrage equilibrium outcome implies the equality of effective utilities among all agents. This could be interpreted as all agents being equally "happy" in their respective environments in our ideal society. We believe that our model contributes towards a deeper mathematical understanding of social dynamics and behavior, which is important as we strive to develop more harmonious societies.
title Density and Affinity Dependent Social Segregation and Arbitrage Equilibrium in a Multi-class Schelling Game
topic Physics and Society
Multiagent Systems
url https://arxiv.org/abs/2403.04084