Zitterbewegung of Spin Split Electrons
- Authors: Tarasenko S.A.1, Poshakinskiy A.V.1, Ivchenko E.L.2, Stepanov I.2, Ersfeld M.2, Lepsa M.3, Beschoten B.2
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Affiliations:
- Ioffe Institute
- 2nd Institute of Physics and Jülich Aachen Research Alliance—Fundamentals of Future Information Technology
- Peter Grünberg Institut (PGI-9) and Jülich Aachen Research Alliance—Fundamentals of Future Information Technology
- Issue: Vol 108, No 5 (2018)
- Pages: 326-328
- Section: Condensed Matter
- URL: https://journals.rcsi.science/0021-3640/article/view/161147
- DOI: https://doi.org/10.1134/S0021364018170022
- ID: 161147
Cite item
Abstract
We describe the trembling motion of conduction-band electrons in solids. The effect originates from the fact that, in the presence of the Rashba/Dresselhaus spin–orbit coupling and the Zeeman splitting, the electron velocity is not a conserved quantity and contains a contribution oscillating at the frequency determined by the spin gap. The phenomenon is similar to the Zitterwebegung of relativistic particles. Trembling motion of individual electrons can be phase-synchronized by initializing the electrons in the same spin states and detected as a macroscopic high-frequency electric current, which is maintained in the system until the electron spin coherence is lost. We also show that the amplitude of such a coherent Zitterbewegung current is increased when its frequency matches the plasmon frequency.
About the authors
S. A. Tarasenko
Ioffe Institute
Author for correspondence.
Email: tarasenko@coherent.ioffe.ru
Russian Federation, St. Petersburg, 194021
A. V. Poshakinskiy
Ioffe Institute
Email: tarasenko@coherent.ioffe.ru
Russian Federation, St. Petersburg, 194021
E. L. Ivchenko
2nd Institute of Physics and Jülich Aachen Research Alliance—Fundamentals of Future Information Technology
Email: tarasenko@coherent.ioffe.ru
Germany, Aachen, D-52074
I. Stepanov
2nd Institute of Physics and Jülich Aachen Research Alliance—Fundamentals of Future Information Technology
Email: tarasenko@coherent.ioffe.ru
Germany, Aachen, D-52074
M. Ersfeld
2nd Institute of Physics and Jülich Aachen Research Alliance—Fundamentals of Future Information Technology
Email: tarasenko@coherent.ioffe.ru
Germany, Aachen, D-52074
M. Lepsa
Peter Grünberg Institut (PGI-9) and Jülich Aachen Research Alliance—Fundamentals of Future Information Technology
Email: tarasenko@coherent.ioffe.ru
Germany, Jülich, D-52425
B. Beschoten
2nd Institute of Physics and Jülich Aachen Research Alliance—Fundamentals of Future Information Technology
Email: tarasenko@coherent.ioffe.ru
Germany, Aachen, D-52074
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