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On the connection between the solutions to the Dirac and Weyl equations and the corresponding electromagnetic four-potentials
作者姓名:Aristides I Kechriniotis  Christos A Tsonos  Konstantinos K Delibasis  Georgios N Tsigaridas
作者单位:Department of Physics;Department of Computer Science and Biomedical Informatics;Department of Physics
摘    要:In this work we study in detail the connection between the solutions to the Dirac and Weyl equations and the associated electromagnetic four-potentials.First,it is proven that all solutions to the Weyl equation are degenerate,in the sense that they correspond to an infinite number of electromagnetic four-potentials.As far as the solutions to the Dirac equation are concerned,it is shown that they can be classified into two classes.The elements of the first class correspond to one and only one four-potential,and are called non-degenerate Dirac solutions.On the other hand,the elements of the second class correspond to an infinite number of four-potentials,and are called degenerate Dirac solutions.Further,it is proven that at least two of these fourpotentials are gauge-inequivalent,corresponding to different electromagnetic fields.In order to illustrate this particularly important result we have studied the degenerate solutions to the forcefree Dirac equation and shown that they correspond to massless particles.We have also provided explicit examples regarding solutions to the force-free Weyl equation and the Weyl equation for a constant magnetic field.In all cases we have calculated the infinite number of different electromagnetic fields corresponding to these solutions.Finally,we have discussed potential applications of our results in cosmology,materials science and nanoelectronics.

关 键 词:DIRAC  equation  WEYL  equation  degenerate  SOLUTIONS  ELECTROMAGNETIC  four-potentials  ELECTROMAGNETIC  fields  massless  particles
收稿时间:2019-10-23

On the connection between the solutions to the Dirac and Weyl equations and the corresponding electromagnetic four-potentials
Aristides I Kechriniotis,Christos A Tsonos,Konstantinos K Delibasis,Georgios N Tsigaridas.On the connection between the solutions to the Dirac and Weyl equations and the corresponding electromagnetic four-potentials[J].Communications in Theoretical Physics,2020,72(4):45201-63.
Authors:Aristides I Kechriniotis  Christos A Tsonos  Konstantinos K Delibasis  Georgios N Tsigaridas
Institution:1.Department of Physics, University of Thessaly, GR-35100 Lamia, Greece;2.Department of Computer Science and Biomedical Informatics, University of Thessaly, GR-35100 Lamia, Greece;3.Department of Physics, School of Applied Mathematical and Physical Sciences, National Technical University of Athens, GR-15780 Zografou Athens, Greece
Abstract:In this work we study in detail the connection between the solutions to the Dirac and Weyl equations and the associated electromagnetic four-potentials. First, it is proven that all solutions to the Weyl equation are degenerate, in the sense that they correspond to an infinite number of electromagnetic four-potentials. As far as the solutions to the Dirac equation are concerned, it is shown that they can be classified into two classes. The elements of the first class correspond to one and only one four-potential, and are called non-degenerate Dirac solutions. On the other hand, the elements of the second class correspond to an infinite number of four-potentials, and are called degenerate Dirac solutions. Further, it is proven that at least two of these fourpotentials are gauge-inequivalent, corresponding to different electromagnetic fields. In order to illustrate this particularly important result we have studied the degenerate solutions to the forcefree Dirac equation and shown that they correspond to massless particles. We have also provided explicit examples regarding solutions to the force-free Weyl equation and the Weyl equation for a constant magnetic field. In all cases we have calculated the infinite number of different electromagnetic fields corresponding to these solutions. Finally, we have discussed potential applications of our results in cosmology, materials science and nanoelectronics.
Keywords:Dirac equation  Weyl equation  degenerate solutions  electromagnetic four-potentials  electromagnetic fields  massless particles  
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