Difference between revisions of "Experimental Observation And A Possible Way To The Creation Of Anomalous Isotopes And Stable Superheavy Nuclei Via The Electron-Nucleus Collapse"

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==Abstract==
 
==Abstract==
  
The problem of supercompression of a solid target to a collapse state is considered. The basic principles of construction and the parameters of an experimental setup ensuring such a supercompression are described. The model and method of creation and evolution of superheavy nuclear clusters with 250<a<500 and="" a=""></a<500>3000-5000 in the controlled collapse zone and in the volume of a remote accumulating screen are discussed. The evolution of such clusters results in the synthesis of isotopes with 1[[Category:Scientific Paper]]
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The problem of supercompression of a solid target to a collapse state is considered. The basic principles of construction and the parameters of an experimental setup ensuring such a supercompression are described. The model and method of creation and evolution of superheavy nuclear clusters with 250<a<500 and="" a=""></a<500>3000-5000 in the controlled collapse zone and in the volume of a remote accumulating screen are discussed. The evolution of such clusters results in the synthesis of isotopes with 1
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[[Category:Scientific Paper|experimental observation possible way creation anomalous isotopes stable superheavy nuclei electron-nucleus collapse]]

Latest revision as of 10:23, 1 January 2017

Scientific Paper
Title Experimental Observation And A Possible Way To The Creation Of Anomalous Isotopes And Stable Superheavy Nuclei Via The Electron-Nucleus Collapse
Author(s) Stanislav V Adamenko, Vladimir I Vysotskii
Keywords Isotopes, Particles, Nucleus, Density, Supercompression
Published 2003
Journal None

Abstract

The problem of supercompression of a solid target to a collapse state is considered. The basic principles of construction and the parameters of an experimental setup ensuring such a supercompression are described. The model and method of creation and evolution of superheavy nuclear clusters with 250<a<500 and="" a=""></a<500>3000-5000 in the controlled collapse zone and in the volume of a remote accumulating screen are discussed. The evolution of such clusters results in the synthesis of isotopes with 1