Evidence for a Steady-State, Holographic, Tachyonic and Super-Symmetric Cosmology

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Scientific Paper
Title Evidence for a Steady-State, Holographic, Tachyonic and Super-Symmetric Cosmology
Author(s) [[]]
Keywords cosmology, dimensional analysis, space-time, holography, inverse anthropic principle
Published 2009
Journal Galilean Electrodynamics
Volume 20
Number S3
Pages 43-53

Abstract

A simple  -free physics gives a length  m, complying with the Lema?tre-Hubble radius, while a  -free electro-gravito-weak dimensional analysis gives a time 13.7 billion years   , to  .  Firstly, the  -formula is given by the gravitational version of the electric Haas model, which predicted twice the  -free Bohr radius.  So, the main Large-Number Correlation could be interpreted by considering the observable Universe as a giant gravitational Hydrogen molecule, and even a ?Black Atom?, for which a simple quantum argument makes the known estimate   precise to  . The  -formula writes down as a 1D-2D Holography whose 3D term involves the Cosmic Background and the   wavelengths by another  -free relation, showing up the Z and W wavelengths, suggesting a cosmic role to the super-symmetric Zino and Wino.  The  -formula also ties atomic and cosmic holographies, where the cosmic 2D one identifies with the Bekenstein-Hawking observable Universe entropy, while the 3D one shows up the electron classical radius, its extension to 1D meaning criticality, and introducing a space quantum  m.  Secondly, the time 13.7 billion years is given by the elimination of ? ? between the formal gravitational, weak, and electric energies, while the intermediary gravito-weak time spawns the Kotov non-D?ppler cosmic period    9600.6(1) s, ( -precision limited).  The  -formula also enters a Canonic Holographic System, which ties the main physical parameters to the basic numbers   and  .  Thus the ?temporal? anthropic arguments and the Multiverse hypothesis are no longer necessary to constrain the physical parameters: an ultimate tachyonic theory must exist, with a steady-state cosmology. The role of  , and   in the optimal musical scales, and the appearance of the huge number  , a relation defining the natural base  , suggests the existence of a holographic computing Grandcosmos of radius  m.