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Another Take on the Musakhail-Farmer Gravitational Aether: The Krueger-Farmer Gravitational Aether

Authors: James Russell Farmer
Affiliations: Independent Researcher, 10 William Ave, Greenlane, Auckland 1051, New Zealand
Indexed in Crossref ✔, Google Scholar ✔, and NikoUArxive ✔

Journal: HyperScience International Journal (HIJ)

Volume/Issue: 6(3), 2026 | Pages: 35-45

ISSN: 2821-3300 | DOI: https://doi.org/10.55672/hij2026pp35-45

Abstract

This paper examines the proposed roles of the Higgs boson and the Reverse Higgs boson in relation to metallic lattice states and gravitational aether. The Higgs boson is treated as producing protons from positrons, whereas the Reverse Higgs boson is associated with conversions between massive fermions and photons. Three possible metallic-lattice configurations are considered: the spherical metallic photon, the Bohr atom, and the Thomson atom. These states are then related to a proposed duality between Newtonian gravitational force and Einsteinian space-time curvature. Within the model, gravitational force is associated with nuclei and with gravitons propagating along tensioned electromagnetic field lines. When a nucleus is absent at the field point, residual space-time curvature remains and acts on non-nuclear entities. Spherical metallic photons and Thomson atoms are therefore assigned a “phantom nucleus” so that they can function as gravitational sources. The Krueger-Farmer gravitational-aether interpretation is developed by relating gravitational interaction to nuclear motion and to two closely spaced characteristic frequencies. The paper also compares four states of matter, including the Schrödinger atom, and examines de Broglie relations, fermionic-wave amplitude, multiple-electron Bohr atoms, and non-orthogonality of Bohr orbits. Finally, the proposed graviton mass-speed relation is compared with the uncertainty principle in an attempt to connect quantum mechanics with gravity within the author’s M-theory framework.

Keywords

Higgs boson; Reverse Higgs boson; gravitational aether; Bohr–Schrödinger atomic models.


License: CC BY-NC 4.0 | https://creativecommons.org/licenses/by-nc/4.0/