Principles of Quantum Universe
arXiv:1402.0354
Abstract
The present monograph is devoted to the theory of gravitation derived consequently as joint nonlinear realization of conformal and affine symmetries by means of Cartan differential forms. In the framework of the joint nonlinear realization of conformal and affine symmetries the interpretation of the last cosmological observational data of Ia Supernovae, anisotropy of the primordial radiation temperature and the mass spectrum of electroweak bosons, including the Higgs particle mass in the expected region ~ 125 GeV, is given. All these observational and experimental data testify to the vacuum energy dominance. The vacuum Casimir energy is a source of intensive cosmological quantum creation gravitons and electroweak bosons including Higgs particles from the empty Universe during the first 10^(-12) sec. The products of decay of the electroweak bosons give the matter content of the present day Universe, including primordial radiation and its baryon asymmetry.
445 pages, 4 Tables, 36 Figures; English translation of the monograph "Principles of Quantum Universe" 2013, Lambert Academic Publishing, Saarbrucken, Germany, ISBN: 978-3-659-41551-7 (in Russian)
References in corpus (7)
- Observation of a new particle in the search for the Standard Model Higgs boson with the ATLAS detector at the LHC
- Observation of a new boson at a mass of 125 GeV with the CMS experiment at the LHC
- Evidence for a particle produced in association with weak bosons and decaying to a bottom-antibottom quark pair in Higgs boson searches at the Tevatron
- Is it possible to estimate the Higgs Mass from the CMB Power Spectrum?
- Condensate Mechanism of Conformal Symmetry Breaking and the Higgs Boson
- Relative Standard of Measurement and Supernova Data
- Condensate mechanism of conformal symmetry breaking