dorsal/arxiv
View SchemaA Theory of Gravity and General Relativity based on Quantum Electromagnetism
| Authors | J. X. Zheng-Johansson |
|---|---|
| Categories | |
| ArXiv ID | physics/0612096 |
| URL | https://arxiv.org/abs/physics/0612096 |
| License | http://arxiv.org/licenses/nonexclusive-distrib/1.0/ |
Abstract
Based on first principles solutions in a unified framework of quantum mechanics and electromagnetism we predict the presence of a universal attractive depolarisation radiation (DR) Lorentz force ($F$) between quantum entities, each being either an IED matter particle or light quantum, in a vacuuonic dielectric vacuum. Given two quantum entities $i=1,2$ of either kind, of characteristic frequencies $\nu_i^0$, masses $m_i^0=h\nu_i^0 / c^2$ and separated at a distance r^0, the solution is $F=- G m_1^0 m_2^0/ (r^0)^2$, where $G= \chi_0^2 e^4/12 \pi^2 \epsilon_0^2 \rho_\lambda$, $\chi_0$ is the susceptibility and $\rho_\lambda$ is the reduced linear mass density of the dielectric vacuum. This force $F$ is accurate at the weak $F$ limit and resembles in all respects Newton's gravity; hence $G$ is the gravitational constant. The DR wave fields and hence the gravity is propagated in the dielectric vacuum at the speed of light $c$; these can not be shielded by matter. A test particle $\mu$ of mass $m^0$ at $r^0$ apart from a large mass $M$ is therefore gravitated by all of the building particles of M directly, by a total gravitational potential $V = -G M m^0/ r^0$. For a finite $V$ and hence a total Hamiltonian $H= m^0 c^2 +V$, solution for the eigenvalue equation of $\mu$ presents a red-shift in the eigen frequency $\nu= \nu^0 (1- GM/r^0 c^2)$ and accordingly other wave variables. The quantum solutions combined with the wave nature of the gravity further lead to dilated gravito optical distance $r=r^0/(1- GM/r^0 c^2) $ and time $t=t^0/(1- GM/r^0 c^2) $, and modified Newton's gravity and Einstein's mass energy relation. Applications of these give predictions of the general relativistic effects manifested in the four classical test experiments of Einstein's general relativity (GR), in direct agreement with the experiments and the predictions given based on GR.
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"abstract": "Based on first principles solutions in a unified framework of quantum\nmechanics and electromagnetism we predict the presence of a universal\nattractive depolarisation radiation (DR) Lorentz force ($F$) between quantum\nentities, each being either an IED matter particle or light quantum, in a\nvacuuonic dielectric vacuum. Given two quantum entities $i=1,2$ of either kind,\nof characteristic frequencies $\\nu_i^0$, masses $m_i^0=h\\nu_i^0 / c^2$ and\nseparated at a distance r^0, the solution is $F=- G m_1^0 m_2^0/ (r^0)^2$,\nwhere $G= \\chi_0^2 e^4/12 \\pi^2 \\epsilon_0^2 \\rho_\\lambda$, $\\chi_0$ is the\nsusceptibility and $\\rho_\\lambda$ is the reduced linear mass density of the\ndielectric vacuum. This force $F$ is accurate at the weak $F$ limit and\nresembles in all respects Newton\u0027s gravity; hence $G$ is the gravitational\nconstant. The DR wave fields and hence the gravity is propagated in the\ndielectric vacuum at the speed of light $c$; these can not be shielded by\nmatter. A test particle $\\mu$ of mass $m^0$ at $r^0$ apart from a large mass\n$M$ is therefore gravitated by all of the building particles of M directly, by\na total gravitational potential $V = -G M m^0/ r^0$. For a finite $V$ and hence\na total Hamiltonian $H= m^0 c^2 +V$, solution for the eigenvalue equation of\n$\\mu$ presents a red-shift in the eigen frequency $\\nu= \\nu^0 (1- GM/r^0 c^2)$\nand accordingly other wave variables. The quantum solutions combined with the\nwave nature of the gravity further lead to dilated gravito optical distance\n$r=r^0/(1- GM/r^0 c^2) $ and time $t=t^0/(1- GM/r^0 c^2) $, and modified\nNewton\u0027s gravity and Einstein\u0027s mass energy relation. Applications of these\ngive predictions of the general relativistic effects manifested in the four\nclassical test experiments of Einstein\u0027s general relativity (GR), in direct\nagreement with the experiments and the predictions given based on GR.",
"arxiv_id": "physics/0612096",
"authors": [
"J. X. Zheng-Johansson"
],
"categories": [
"physics.gen-ph"
],
"license": "http://arxiv.org/licenses/nonexclusive-distrib/1.0/",
"title": "A Theory of Gravity and General Relativity based on Quantum Electromagnetism",
"url": "https://arxiv.org/abs/physics/0612096"
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