Reasons for nuclear forces in light of the constitution of the real space
Volodymyr Krasnoholovets

TL;DR
This paper introduces a novel submicroscopic mechanics framework based on space microstructure to explain nuclear forces, emphasizing deformation coats and inerton clouds as key mechanisms in nucleon interactions.
Contribution
It proposes a new approach linking space microstructure to nuclear forces, highlighting deformation coats and inerton clouds as fundamental in nucleon interactions.
Findings
Deformation coats around nucleons generate nuclear forces.
Inerton clouds are excitations of space lattice influencing nucleon motion.
A statistical model explains cluster stability in nuclei.
Abstract
The concept of microstructure of the real space, considered as a mathematical lattice of cells (the tessel-lattice), and notions of canonical particles and fields, which are generated by the space, are analyzed. Submicroscopic mechanics based on this concept is discussed and employed for in-depth study of the nucleon-nucleon interaction. It is argued that a deformation coat is developed in the real space around the nucleon (as is the case with any other canonical particle such as electron, muon, etc.) and that they are the deformation coats that are responsible for the appearance of nuclear forces. One more source of nuclear forces is associated with inerton clouds, excitations of the space tessel-lattice (the excitations are a substructure of nucleons' matter waves), which accompany moving nucleons as in the case of any other canonical particles. Two nuclear systems are under…
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Taxonomy
TopicsCold Fusion and Nuclear Reactions · Paranormal Experiences and Beliefs · Diverse Interdisciplinary Research Studies
