Exploring Fermi's Paradox using an Intragalactic Colonization Model

Fuente: arXiv
Enregistré dans:
Détails bibliographiques
Auteurs principaux: Roudenko, Gregory, Pierre-Boyer, Yurrian
Format: Preprint
Publié: 2024
Sujets:
Accès en ligne:
Tags: Ajouter un tag
Pas de tags, Soyez le premier à ajouter un tag!
_version_ 1866915001486278656
author Roudenko, Gregory
Pierre-Boyer, Yurrian
author_facet Roudenko, Gregory
Pierre-Boyer, Yurrian
contents We explore Fermi's Paradox via a system of differential equations and using simulations of dispersal and interactions between competing interplanetary civilizations. To quantify the resources and potentials of these worlds, three different state variables representing population, environment, and technology, are used. When encounters occur between two different civilizations, the deterministic Lanchester Battle Model is used to determine the outcome of the conflict. We use the Unity engine to simulate the possible outcomes of colonization by different types of civilizations to further investigate Fermi's question. When growth rates of population, technology and nature are out of balance, planetary civilizations can collapse. If the balance is adequate, then some civilizations can develop into dominating ones; nevertheless, they leave large spatial gaps in the distribution of their colonies. The unexpected result is that small civilizations can be left in existence by dominating civilizations in a galaxy due to those large gaps. Our results provide some insights into the validity of various solutions to Fermi's Paradox.
format Preprint
id arxiv_https___arxiv_org_abs_2411_00061
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Exploring Fermi's Paradox using an Intragalactic Colonization Model
Roudenko, Gregory
Pierre-Boyer, Yurrian
Physics and Society
Dynamical Systems
Adaptation and Self-Organizing Systems
Populations and Evolution
34F05, 92D25, 91C20, 91F99, 85-10
We explore Fermi's Paradox via a system of differential equations and using simulations of dispersal and interactions between competing interplanetary civilizations. To quantify the resources and potentials of these worlds, three different state variables representing population, environment, and technology, are used. When encounters occur between two different civilizations, the deterministic Lanchester Battle Model is used to determine the outcome of the conflict. We use the Unity engine to simulate the possible outcomes of colonization by different types of civilizations to further investigate Fermi's question. When growth rates of population, technology and nature are out of balance, planetary civilizations can collapse. If the balance is adequate, then some civilizations can develop into dominating ones; nevertheless, they leave large spatial gaps in the distribution of their colonies. The unexpected result is that small civilizations can be left in existence by dominating civilizations in a galaxy due to those large gaps. Our results provide some insights into the validity of various solutions to Fermi's Paradox.
title Exploring Fermi's Paradox using an Intragalactic Colonization Model
topic Physics and Society
Dynamical Systems
Adaptation and Self-Organizing Systems
Populations and Evolution
34F05, 92D25, 91C20, 91F99, 85-10
url https://arxiv.org/abs/2411.00061