Георгий Попов – Оrigins of the material world (страница 5)
The explosion of a supernova is a multi-cascade process, starting with critical radiation that melts the structure of space in its path. This radiation is the conditionally manifested energy of the highest vibrations, concentrated in the subsurface layer at the moment of explosion. The next stage is the formation of original high-frequency material particles – neutrinos and antineutrinos. And only starting from the third wave, with all variations and densities of UEC energies, begins the formation of basic particles – protons, neutrons, and electrons. Besides basic particles, a huge number of weakly stable and intermediate particles are formed. Along with the processes of forming material particles and atoms, structures – analogs of black holes arise, when a significant spherical volume of the erupted energy melt, balanced by all components of UEC, represents a conditionally manifested monad. Insufficient sizes for forming critical gravity lead to the fact that elementary particles on the surface of such a formation cannot decompose into individual components of UEC. With an active layer of elementary parts, conditions for the generation and regeneration of neutrons may be formed. As such a layer accumulates on its surface, a so-called neutron star is formed. Thus, from huge balanced energy structures of UEC melts, stars and planets are born. The original high-density multi-sized cores of the melt gradually become covered with lower-frequency components of UEC. Thus, a multi-sized series of spherical formations – the foundations of suns and planets, is formed. Fig. 4.
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