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Electron spin antiresonance in magnetic superlattices


Reference:

Nogaret, A., Saraiva, P., Nasirpouri, F., Portal, J. C., Beere, H. E. and Ritchie, D. A., 2011. Electron spin antiresonance in magnetic superlattices. AIP Conference Proceedings - Physics of Semiconductors, 1399, pp. 695-696.

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    Official URL:

    http://dx.doi.org/10.1063/1.3666567

    Abstract

    We electrically detect the resonant absorption of microwaves by a two‐dimensional electron gas modulated by a periodic magnetic field with zero average. The quantum interferences of two resonant spin flip transitions, one propelled by microwaves the other by snake orbits block spin flips hence the propagation of snake orbits. The resistance peak is found to be proportional to the probability of the hybrid quantum state produced by these interferences.

    Details

    Item Type Articles
    CreatorsNogaret, A., Saraiva, P., Nasirpouri, F., Portal, J. C., Beere, H. E. and Ritchie, D. A.
    DOI10.1063/1.3666567
    DepartmentsFaculty of Science > Physics
    Publisher StatementNogaret_AIP-Conf-Proc_1399_695.pdf: Copyright (2011) American Institute of Physics. This article may be downloaded for personal use only. Any other use requires prior permission of the author and the American Institute of Physics. The following article appeared in Nogaret, A., Saraiva, P., Nasirpouri, F., Portal, J. C. and Beere, H. E., 2011. Electron spin antiresonance in magnetic superlattices. AIP Conference Proceedings - Physics of Semiconductors, 1399, pp. 695-696 and may be found at http://dx.doi.org/10.1063/1.3666567
    RefereedYes
    StatusPublished
    ID Code24896
    Additional Information30th International Conference on the Physics of Semiconductors, 25–30 July 2010, Seoul, Korea.

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