PaperPanorama

arXiv:1801.03790·v2·physics.gen-ph

Impenetrable barriers for positrons in neighbourhood of superheavy nuclei with

V.P.Neznamov

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Abstract

Analysis of quantum mechanical motion of charged half-spin particles in the repulsive Coulomb field by means of second-order equation results in that an impenetrable potential barrier not explored earlier was found. For a particle at rest with a reduced mass , the barrier radius is equal to half classical radius: the barrier radius decreases with increase in the particle energy. For the stable and quasi-stable nuclei with , presence of an impenetrable barrier as -decay leads to the existence of "traps" for positrons in the neighbourhood of nuclei and as (with emission of electron-positron pairs by vacuum) leads to the existence of a quasi-constant source of annihilation quanta.

Comments: 6 pages, 2 figures