A Zero-Parameter Derivation of String Theory: Resolving the Landscape Problem.

Fuente: Zenodo
Guardado en:
Detalles Bibliográficos
Autor principal: McCabe, Luke
Formato: Recurso digital
Publicado: Zenodo 2026
Materias:
Acceso en línea:
Etiquetas: Agregar Etiqueta
Sin Etiquetas, Sea el primero en etiquetar este registro!
_version_ 1866901884186394624
author McCabe, Luke
author_facet McCabe, Luke
contents <p>We present a novel framework — Chrono Singularity Unification (CSU) — that derives the full mathematical structure of string theory from two information-theoretic axioms: a minimal binary alphabet (Z = 2) and a unique vacuum energy regularisation (c = 1/12). Starting from these first principles, we recover the Virasoro and Super-Virasoro algebras, the critical spacetime dimension D = 10, anomaly cancellation for SO(32) and E₈ × E₈, modular invariance, and the spectral dimension flow from d_S = 2 (UV) to d_S = 4 (IR). All results emerge without free parameters or empirical input.</p> <p>The framework includes rigorous proofs of: (i) the uniqueness of strings as fundamental objects via exclusion of all alternative extended structures; (ii) the necessity of N = 1 worldsheet supersymmetry via exhaustive elimination of all other algebras; and (iii) the Spectral Symmetry Lock theorem establishing d_S = 2 as the unique UV geometry. A companion supplementary paper provides the complete mathematical apparatus with all derivations unabridged.</p> <p><strong>Keywords:</strong> string theory, information theory, Virasoro algebra, conformal field theory, anomaly cancellation, spectral dimension, modular invariance, supersymmetry, computational physics</p>
format Recurso digital
id zenodo_https___doi_org_10_5281_zenodo_19221605
institution Zenodo
language
publishDate 2026
publisher Zenodo
record_format zenodo
spellingShingle A Zero-Parameter Derivation of String Theory: Resolving the Landscape Problem.
McCabe, Luke
String theory
CSU
Chrono Singularity Unification
Virasoro algebra
supersymmetry
first principles
computational theory
landscape problem
Dark matter
dark energy
M Theory
General relativity
quantum mechanics
quantum gravity
<p>We present a novel framework — Chrono Singularity Unification (CSU) — that derives the full mathematical structure of string theory from two information-theoretic axioms: a minimal binary alphabet (Z = 2) and a unique vacuum energy regularisation (c = 1/12). Starting from these first principles, we recover the Virasoro and Super-Virasoro algebras, the critical spacetime dimension D = 10, anomaly cancellation for SO(32) and E₈ × E₈, modular invariance, and the spectral dimension flow from d_S = 2 (UV) to d_S = 4 (IR). All results emerge without free parameters or empirical input.</p> <p>The framework includes rigorous proofs of: (i) the uniqueness of strings as fundamental objects via exclusion of all alternative extended structures; (ii) the necessity of N = 1 worldsheet supersymmetry via exhaustive elimination of all other algebras; and (iii) the Spectral Symmetry Lock theorem establishing d_S = 2 as the unique UV geometry. A companion supplementary paper provides the complete mathematical apparatus with all derivations unabridged.</p> <p><strong>Keywords:</strong> string theory, information theory, Virasoro algebra, conformal field theory, anomaly cancellation, spectral dimension, modular invariance, supersymmetry, computational physics</p>
title A Zero-Parameter Derivation of String Theory: Resolving the Landscape Problem.
topic String theory
CSU
Chrono Singularity Unification
Virasoro algebra
supersymmetry
first principles
computational theory
landscape problem
Dark matter
dark energy
M Theory
General relativity
quantum mechanics
quantum gravity
url https://doi.org/10.5281/zenodo.19221605