Abstract

Hypersphere World-Universe Model (WUM) is an alternative to the prevailing Big Bang Model (BBM). WUM and BBM are principally different Models: 1) Instead of the Initial Singularity with the infinite energy density and the extremely rapid expansion of the space (Inflation) in BBM; in WUM, there was a Fluctuation (4D Nucleus of the World with an extrapolated radius equals to a basic unit of size a) in the Eternal Universe with a finite extrapolated energy density (four orders of magnitude less than the nuclear density) and a finite expansion of the Nucleus in its fourth spatial dimension with speed c that is the gravitodynamic constant; 2) Instead of the Infinite Homogeneous and Isotropic Universe around the Initial Singularity in BBM; in WUM, the 3D Finite Boundless World (the Hypersphere of the 4D Nucleus) presents a Patchwork Quilt of different Luminous Superclusters (≳103), which emerged in various places of the World at different Cosmological times. The Medium of the World is Homogeneous and Isotropic. The distribution of Macroobjects in the World is spatially Inhomogeneous and Anisotropic and temporally Non-simultaneous. The Absolute Age of the entire World (determined by the parameters of the Medium) is 14.22 Gyr.

Highlights

  • Hypersphere World-Universe Model (WUM) is an alternative to the prevailing Big Bang Model (BBM)

  • WUM solves a number of physical problems in contemporary Cosmology through Dark Matter Particles (DMPs) and their interactions: Fermi Bubbles—

  • WUM postulates that rest energies of Dark Matter Fermion (DMF) and bosons are proportional to a basic unit of energy E0 = hc a multiplied by different exponents of α and can be expressed with the following formulae [4]: DMF1: E= DMF1 α= −2 E0 1.3149950 TeV

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Summary

Introduction

Hypersphere World-Universe Model (WUM) is an alternative to the prevailing Big Bang Model (BBM). WUM solves a number of physical problems in contemporary Cosmology through Dark Matter Particles (DMPs) and their interactions: Fermi Bubbles—. In 2013, WUM predicted the values of the following Cosmological parameters: Hubble’s, Gravitational, Intergalactic plasma concentration, and Photons minimum energy, which were experimentally confirmed in 2015-2021. Other particles, including DM and baryonic matter, form shells surrounding the cores” [1]. This manuscript concludes the series of papers on WUM published by “Journal of High Energy Physics, Gravitation and Cosmology” journal [2]-[21]. Many results obtained there are quoted in the current work without a full justification; an interested reader is encouraged to view the referenced papers in such cases

Early Ideas
Multicomponent Dark Matter
Weak Interaction
Macroobject Shell Model
Macrostructures
Medium of the World
Creation of Matter
Angular Momentum Problem
Dark Epoch
Rotational Fission
Luminous Epoch
Dark Matter Fermi Bubbles
Dark Matter Cores of Macroobjects
Sun’s Dark Matter Core
4.11. Dark Matter Reactors
Findings
Conclusions
Full Text
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