
Unconventional reconciliation path for quantum mechanics and general relativity
Author(s) -
Yuguru Samuel Polopa
Publication year - 2022
Publication title -
iet quantum communication
Language(s) - English
Resource type - Journals
ISSN - 2632-8925
DOI - 10.1049/qtc2.12034
Subject(s) - theoretical physics , general relativity , physics , classical physics , theory of relativity , classical mechanics , relativistic mechanics , field (mathematics) , quantum , quantum mechanics , mathematics , pure mathematics
Physics in general is successfully governed by quantum mechanics at the microscale and principles of relativity at the macroscale. Any attempts to unify them using conventional methods have somewhat remained elusive for nearly a century up to the present stage. Here, a classical gedanken experiment of electron‐wave diffraction of a single slit is intuitively examined for its quantized states. A unidirectional monopole pair (MP) field as quanta of the electric field is pictorially conceptualised into 4D space‐time. Its application towards quantum mechanics and general relativity appears consistent with existing knowledge in physics. This considers a multiverse of MP models at a hierarchy of scales. Einsteinian gravity is then defined to be of circular acceleration with angular momentum in time reversal mode to an overarching MP field precessing into forward time. Such descriptions provide a credible intuitive tool for physics applications in general. Its proposed design can be assessed using conventional methods, perhaps in incremental steps and this warrants further investigations.