Поляризація вакууму квантованого спінорного поля за наявності топологічного дефекту у двовимірному просторі

The two-dimensional space with a topological defect is a transverse section of the three-dimensional space with an Abrikosov–Nielsen–Olesen vortex, i.e. a gauge-flux-carrying tube which is impenetrable for quantum matter. Charged spinor matter field is quantized in this section with the most general...

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Bibliographic Details
Date:2019
Main Authors: Sitenko, Yu. A., Gorkavenko, V. M.
Format: Article
Language:English
Ukrainian
Published: Publishing house "Academperiodika" 2019
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Online Access:https://ujp.bitp.kiev.ua/index.php/ujp/article/view/2019519
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Journal Title:Ukrainian Journal of Physics

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Ukrainian Journal of Physics
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Summary:The two-dimensional space with a topological defect is a transverse section of the three-dimensional space with an Abrikosov–Nielsen–Olesen vortex, i.e. a gauge-flux-carrying tube which is impenetrable for quantum matter. Charged spinor matter field is quantized in this section with the most general mathematically admissible boundary condition at the edge of the defect. We show that a current and a magnetic field are induced in the vacuum. The dependence of results on the boundary conditions is studied, and we find that the requirement of finiteness of the total induced vacuum magnetic flux removes an ambiguity in the choice of boundary conditions. The differences between the cases of massive and massless spinor matters are discussed.