Abstract

This manuscript provides a comparison of the Hypersphere World-Universe Model (WUM) with the prevailing Big Bang Model (BBM) of the Standard Cosmology. The performed analysis of BBM shows that the Four Pillars of the Standard Cosmology are model-dependent and not strong enough to support the model. The angular momentum problem is one of the most critical problems in BBM. Standard Cosmology cannot explain how Galaxies and Extra Solar systems obtained their substantial orbital and rotational angular momenta, and why the orbital momentum of Jupiter is considerably larger than the rotational momentum of the Sun. WUM is the only cosmological model in existence that is consistent with the Law of Conservation of Angular Momentum. To be consistent with this Fundamental Law, WUM discusses in detail the Beginning of the World. The Model introduces Dark Epoch (spanning from the Beginning of the World for 0.4 billion years) when only Dark Matter Particles (DMPs) existed, and Luminous Epoch (ever since for 13.8 billion years). Big Bang discussed in Standard Cosmology is, in our view, transition from Dark Epoch to Luminous Epoch due to Rotational Fission of Overspinning Dark Matter (DM) Supercluster’s Cores. WUM envisions Matter carried from the Universe into the World from the fourth spatial dimension by DMPs. Ordinary Matter is a byproduct of DM annihilation. WUM solves a number of physical problems in contemporary Cosmology and Astrophysics through DMPs and their interactions: Angular Momentum problem in birth and subsequent evolution of Galaxies and Extrasolar systems—how do they obtain it; Fermi Bubbles—two large structures in gamma-rays and X-rays above and below Galactic center; Diversity of Gravitationally-Rounded Objects in Solar system; some problems in Solar and Geophysics [1]. WUM reveals Inter-Connectivity of Primary Cosmological Parameters and calculates their values, which are in good agreement with the latest results of their measurements.

Highlights

  • Hypersphere World-Universe Model (WUM) is proposed as an alternative to the prevailing Big Bang Model of Standard Cosmology

  • Big Bang discussed in Standard Cosmology is, in our view, transition from Dark Epoch to Luminous Epoch due to Rotational Fission of Overspinning Dark Matter (DM) Supercluster’s Cores

  • Proposed Weak Interaction between Dark Matter Particles (DMPs) provides the integrity of DM Cores of all Macroobjects [1]

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Summary

Introduction

Hypersphere World-Universe Model (WUM) is proposed as an alternative to the prevailing Big Bang Model of Standard Cosmology. Projecting galaxy trajectories backwards in time means that they converge to the cosmological Singularity at t = 0 that is an infinite energy density state. This uncovers one of the shortcomings of the Standard Cosmology—the Horizon problem [3]: Why does the universe look the same in all directions when it arises out of causally disconnected regions? This problem is most acute for the very smooth cosmic microwave background radiation This problem was resolved by the cosmological Inflation, which is a theory of an extremely rapid exponential expansion of space in the early universe. It is not yet clear whether the discrepancy in the observations is due to systematics, or constitutes a major problem for the Standard model

Origin of the Cosmic Background Radiation
Nucleosynthesis of the Light Elements
Formation of Galaxies and Large-Scale Structures
Black Holes
Hypersphere World-Universe Model
Multicomponent Dark Matter
Macroobjects Cores Made Up of Dark Matter Particles
The Beginning of the World
Expansion and Creation of Matter
Content of the World
Inter-Connectivity of Primary Cosmological Parameters
Dark Epoch
Rotational Fission
Luminous Epoch
3.10. Dark Matter Fermi Bubbles
3.11. Hypersphere World
Conclusions
Findings
Results
Full Text
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