Interaction of the magnetic quadrupole moment of a non-relativistic particle with an electric field in the background of screw dislocations with a rotating frame

In this study, we considered a moving particle with a magnetic quadrupole moment in an elastic medium in the presence of a screw dislocation. We assumed a radial electric field in a rotating frame that leads a uniform effective magnetic field perpendicular to the plane of motion. We solved the Schrö...

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Bibliographic Details
Published in:Physica scripta Vol. 96; no. 1; pp. 15005 - 15014
Main Authors: Lütfüo lu, Bekir Can, Kří, Jan, Zare, Soroush, Hassanabadi, Hassan
Format: Journal Article
Language:English
Published: IOP Publishing 01-01-2021
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Summary:In this study, we considered a moving particle with a magnetic quadrupole moment in an elastic medium in the presence of a screw dislocation. We assumed a radial electric field in a rotating frame that leads a uniform effective magnetic field perpendicular to the plane of motion. We solved the Schrödinger equation to derive wave and energy eigenvalue functions by employing analytical methods for two interaction configurations: in the absence of potential and in the presence of a static scalar potential. Due to the topological defect in the medium, we observed a shift in the angular momentum quantum number which affects the energy eigenvalues and the wave function of the system.
Bibliography:PHYSSCR-111923.R2
ISSN:0031-8949
1402-4896
1402-4896
DOI:10.1088/1402-4896/abc78b