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Pregeometry, Formal Language and Constructivist Foundations of Physics

Arsiwalla, Xerxes and Elshatlawy, Hatem and Rickles, Dean (2023) Pregeometry, Formal Language and Constructivist Foundations of Physics. [Preprint]

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Abstract

How does one formalize the structure of structures necessary for the foundations of physics? This work is an attempt at conceptualizing the metaphysics of pregeometric structures, upon which new and existing notions of quantum geometry may find a foun- dation. We discuss the philosophy of pregeometric structures due to Wheeler, Leibniz as well as modern manifestations in topos theory. We draw attention to evidence suggesting that the framework of formal language, in particular, homotopy type theory, provides the conceptual building blocks for a theory of pregeometry. This work is largely a synthesis of ideas that serve as a precursor for conceptualizing the notion of space in physical theories. In particular, the approach we espouse is based on a constructivist philosophy, wherein “structureless structures” are syntactic types realizing formal proofs and programs. Spaces and algebras relevant to physical theories are modeled as type-theoretic routines constructed from compositional rules of a formal language. This offers the remarkable possibility of taxonomizing distinct notions of geometry using a common theoretical framework. In particular, this perspective addresses the crucial issue of how spatiality may be realized in models that link formal computation to physics, such as the Wolfram model.


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Item Type: Preprint
Creators:
CreatorsEmailORCID
Arsiwalla, Xerxesx.d.arsiwalla@gmail.com
Elshatlawy, Hatemhatem@wolfram.com
Rickles, Deandean.rickles@sydney.edu.au
Keywords: Constructivist Foundations of Physics; Formal Language; Pregeometry; Topos Theory; Quantum Gravity.
Subjects: Specific Sciences > Mathematics > Epistemology
Specific Sciences > Mathematics > Foundations
Specific Sciences > Mathematics > Methodology
Specific Sciences > Mathematics > Ontology
Specific Sciences > Computation/Information
Specific Sciences > Artificial Intelligence
Specific Sciences > Physics > Cosmology
Specific Sciences > Physics
Specific Sciences > Physics > Quantum Gravity
Specific Sciences > Physics > Relativity Theory
Specific Sciences > Physics > Symmetries/Invariances
Depositing User: Dr Dean Rickles
Date Deposited: 08 Nov 2023 18:38
Last Modified: 08 Nov 2023 18:38
Item ID: 22743
Subjects: Specific Sciences > Mathematics > Epistemology
Specific Sciences > Mathematics > Foundations
Specific Sciences > Mathematics > Methodology
Specific Sciences > Mathematics > Ontology
Specific Sciences > Computation/Information
Specific Sciences > Artificial Intelligence
Specific Sciences > Physics > Cosmology
Specific Sciences > Physics
Specific Sciences > Physics > Quantum Gravity
Specific Sciences > Physics > Relativity Theory
Specific Sciences > Physics > Symmetries/Invariances
Date: 8 November 2023
URI: https://philsci-archive.pitt.edu/id/eprint/22743

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