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- W3048554180 abstract "Unexpected electron states, bound to the Coulomb field of the nucleus, are proposed. These anomalous states are mediated by positional quantum fluctuations of this nucleus which is a lattice site in a solid. Without that support the states look as formal singular solutions which are, at first sight, totally useless. The electron binding energy in the $MeV$ range is surprising in condensed matter since it usually relates to nuclear processes. Anomalous states are separated from usual electron ones in a solid by an energy barrier. The lattice distortions, jointly with the electron degrees of freedom, are responsible for the barrier formation. This contrasts to polaron in a solid where lattice distortions form a well but not a barrier. Electron transitions to anomalous levels are possible under a high energy external perturbation to overcome the barrier. Anomalous state can be of the Dirac or Majorana type." @default.
- W3048554180 created "2020-08-18" @default.
- W3048554180 creator A5007312064 @default.
- W3048554180 date "2020-08-03" @default.
- W3048554180 modified "2023-09-27" @default.
- W3048554180 title "Anomalous Dirac and Majorana states in condensed matter" @default.
- W3048554180 hasPublicationYear "2020" @default.
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