Quantum String Models and Celestial Mechanics: Applying the "Filament Lightbulb" Analogy to Quasars And Celestial Bodies
Edison Carrasco Jiménez · 2024
This paper explores the conceptual analogy between quantum string theory and celestial mechanics, specifically in the context of quasars and other astrophysical bodies. Drawing from the "filament lightbulb" model, where the string is considered a dual mechanical-electromagnetic object, we propose that quasars, with their intense electromagnetic emissions, can be modeled similarly to atoms in a quantum mechanical system. We apply this analogy to describe the mechanical and electromagnetic dynamics of celestial bodies, showing how string theory’s vibrational modes can be used to understand the mechanics of gravitationally bound systems in astrophysics. Furthermore, we explore how recent contributions by Fields Medalists in mathematics have enriched our understanding of string theory, quantum gravity, and astrophysical phenomena.