2D self-interacting magnetically confined electrons

Abstract We investigate the nonlinear dynamics of electrons in the presence of an external homogeneous magnetic field in 2 + 1 flat space-time dimensions. Two regimes of magnetic fields are examined: high laboratory fields and strong-QED fields. We provide the (nonlinear) ground-state Landau energy...

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Published inPhysica scripta Vol. 96; no. 7; pp. 75004 - 75013
Main Authors Bruce, S A, Diaz-Valdes, J F
Format Journal Article
LanguageEnglish
Published IOP Publishing 01.07.2021
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Abstract Abstract We investigate the nonlinear dynamics of electrons in the presence of an external homogeneous magnetic field in 2 + 1 flat space-time dimensions. Two regimes of magnetic fields are examined: high laboratory fields and strong-QED fields. We provide the (nonlinear) ground-state Landau energy levels together with their respective eigenfunctions. We comment on the relevance of this (toy) model to reveal certain processes thought to occur near the surfaces of neutron stars.
AbstractList Abstract We investigate the nonlinear dynamics of electrons in the presence of an external homogeneous magnetic field in 2 + 1 flat space-time dimensions. Two regimes of magnetic fields are examined: high laboratory fields and strong-QED fields. We provide the (nonlinear) ground-state Landau energy levels together with their respective eigenfunctions. We comment on the relevance of this (toy) model to reveal certain processes thought to occur near the surfaces of neutron stars.
Author Diaz-Valdes, J F
Bruce, S A
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Snippet Abstract We investigate the nonlinear dynamics of electrons in the presence of an external homogeneous magnetic field in 2 + 1 flat space-time dimensions. Two...
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SubjectTerms 2D electron dynamics
Landau energy levels
nonlinear Dirac equation
Title 2D self-interacting magnetically confined electrons
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