Physics & Spacepreprint2026-08-27

Meta-Time Constrained SO(3,3) Spacetime Structure: A Framework for Resolving Ghosts, Quantum Phenomena, and Cosmological Mapping

Open access0 citations

Abstract

In standard modern physics, high-dimensional spacetime frameworks featuring multiple timelike dimensions—such as SO(3,3)—suffer from negative-norm ghost states due to unconstrained temporal degrees of freedom. In this paper, we propose a novel 3+1+2 dimensional spacetime model derived by imposing an overarching irreversible vector constraint termed "Meta-Time" onto a symmetric 3-space + 3-time structure. By establishing a rigorous separation of scales and introducing four fundamental postulates, we effectively eliminate negative-norm states without resorting to artificial compactification. Furthermore, we demonstrate that this constrained geometric framework naturally maps onto critical unresolved physics problems: the derivation of the dark energy equation of state (w = -1), geometric representations of quantum superposition through transverse phase desynchronization, and hydrodynamic mass generation via local topological defects resisting the macro-temporal flow.

// Source

View paper (DOI)Open access versionOpenAlexZenodo (CERN European Organization for Nuclear Research)Published 2026-08-27

Authors: Changho Cho