dorsal/arxiv
View SchemaExistence of Negative Gravity Material Identification of Dark Energy Dark Matter Isothermal Gravitational Equilibrium and Galactic Rotation Theory
| Authors | James G. Gilson |
|---|---|
| Categories | |
| ArXiv ID | physics/0603226 |
| URL | https://arxiv.org/abs/physics/0603226 |
| License | http://arxiv.org/licenses/nonexclusive-distrib/1.0/ |
Abstract
A solution to Einstein's field equations via the Friedman equations is shown to produce a cosmological model that is in exact agreement with the measurements made by the dark energy astronomers. All the essential physical parameters are obtained as epoch dependent functions all in closed form. The equations of state are obtained for total density, non-dark energy density and dark energy density. An interpretation of the structure involving a dark energy mass distribution that is twice the usual value is shown to clarify greatly the physical significance of the mathematics. It is asserted that the astronomer's measurements together with the mathematical model proves that the universe is permeated uniformly with a positive mass density that caries a negative gravitational constant, -G, characteristic. This mass component is identified with the dark energy content of the universe that has been postulated to explain the observed acceleration. Another result implied by the model is that there is twice the amount of dark energy that is usually considered to be present. This last point is analysed in more detail in appendix 1 using Einstein's field equations. Five additional appendices, 2, 3, 4, 5 and 6 in which isothermal gravitational dark matter equilibrium and the galactic rotations curve flatness problem are examined in detail. Appendix 5 is concerned with mass clumping and expressing gravitational isothermal equilibrium constraints using a cosmological Schr\"odinger equation to demonstrate the existence of a new quantum force involved with galactic stability. Appendix 6 is concerned with gravitational quantization. Each appendix has its own abstract.
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"abstract": "A solution to Einstein\u0027s field equations via the Friedman equations is shown\nto produce a cosmological model that is in exact agreement with the\nmeasurements made by the dark energy astronomers. All the essential physical\nparameters are obtained as epoch dependent functions all in closed form. The\nequations of state are obtained for total density, non-dark energy density and\ndark energy density. An interpretation of the structure involving a dark energy\nmass distribution that is twice the usual value is shown to clarify greatly the\nphysical significance of the mathematics. It is asserted that the astronomer\u0027s\nmeasurements together with the mathematical model proves that the universe is\npermeated uniformly with a positive mass density that caries a negative\ngravitational constant, -G, characteristic. This mass component is identified\nwith the dark energy content of the universe that has been postulated to\nexplain the observed acceleration. Another result implied by the model is that\nthere is twice the amount of dark energy that is usually considered to be\npresent. This last point is analysed in more detail in appendix 1 using\nEinstein\u0027s field equations. Five additional appendices, 2, 3, 4, 5 and 6 in\nwhich isothermal gravitational dark matter equilibrium and the galactic\nrotations curve flatness problem are examined in detail. Appendix 5 is\nconcerned with mass clumping and expressing gravitational isothermal\nequilibrium constraints using a cosmological Schr\\\"odinger equation to\ndemonstrate the existence of a new quantum force involved with galactic\nstability. Appendix 6 is concerned with gravitational quantization. Each\nappendix has its own abstract.",
"arxiv_id": "physics/0603226",
"authors": [
"James G. Gilson"
],
"categories": [
"physics.gen-ph"
],
"license": "http://arxiv.org/licenses/nonexclusive-distrib/1.0/",
"title": "Existence of Negative Gravity Material Identification of Dark Energy Dark Matter Isothermal Gravitational Equilibrium and Galactic Rotation Theory",
"url": "https://arxiv.org/abs/physics/0603226"
},
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