author_facet Ming, Y.
Gong, J.
Zhang, R. Q.
Ming, Y.
Gong, J.
Zhang, R. Q.
author Ming, Y.
Gong, J.
Zhang, R. Q.
spellingShingle Ming, Y.
Gong, J.
Zhang, R. Q.
Journal of Applied Physics
Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
General Physics and Astronomy
author_sort ming, y.
spelling Ming, Y. Gong, J. Zhang, R. Q. 0021-8979 1089-7550 AIP Publishing General Physics and Astronomy http://dx.doi.org/10.1063/1.3658852 <jats:p>Using the transfer matrix method and Airy function, the spin-dependent tunneling through the ZnMnSe/ZnSe/ZnBeSe structure was investigated theoretically. The electron tunneling determined by the applied bias, external magnetic field, and spin orientations exhibited some interesting and complex features. It was found that the magnetic field could suppress the spin-up current, but enhance the spin-down current. Furthermore the spin-flip of current could be realized by changing the applied bias slightly. Therefore, it can be believed that our structure could behave as a good spin-filter.</jats:p> Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures Journal of Applied Physics
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title Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
title_unstemmed Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
title_full Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
title_fullStr Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
title_full_unstemmed Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
title_short Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
title_sort spin-polarized transport through znmnse/znse/znbese heterostructures
topic General Physics and Astronomy
url http://dx.doi.org/10.1063/1.3658852
publishDate 2011
physical
description <jats:p>Using the transfer matrix method and Airy function, the spin-dependent tunneling through the ZnMnSe/ZnSe/ZnBeSe structure was investigated theoretically. The electron tunneling determined by the applied bias, external magnetic field, and spin orientations exhibited some interesting and complex features. It was found that the magnetic field could suppress the spin-up current, but enhance the spin-down current. Furthermore the spin-flip of current could be realized by changing the applied bias slightly. Therefore, it can be believed that our structure could behave as a good spin-filter.</jats:p>
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author Ming, Y., Gong, J., Zhang, R. Q.
author_facet Ming, Y., Gong, J., Zhang, R. Q., Ming, Y., Gong, J., Zhang, R. Q.
author_sort ming, y.
container_issue 9
container_start_page 0
container_title Journal of Applied Physics
container_volume 110
description <jats:p>Using the transfer matrix method and Airy function, the spin-dependent tunneling through the ZnMnSe/ZnSe/ZnBeSe structure was investigated theoretically. The electron tunneling determined by the applied bias, external magnetic field, and spin orientations exhibited some interesting and complex features. It was found that the magnetic field could suppress the spin-up current, but enhance the spin-down current. Furthermore the spin-flip of current could be realized by changing the applied bias slightly. Therefore, it can be believed that our structure could behave as a good spin-filter.</jats:p>
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id ai-49-aHR0cDovL2R4LmRvaS5vcmcvMTAuMTA2My8xLjM2NTg4NTI
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publishDate 2011
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publisher AIP Publishing
record_format ai
recordtype ai
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source_id 49
spelling Ming, Y. Gong, J. Zhang, R. Q. 0021-8979 1089-7550 AIP Publishing General Physics and Astronomy http://dx.doi.org/10.1063/1.3658852 <jats:p>Using the transfer matrix method and Airy function, the spin-dependent tunneling through the ZnMnSe/ZnSe/ZnBeSe structure was investigated theoretically. The electron tunneling determined by the applied bias, external magnetic field, and spin orientations exhibited some interesting and complex features. It was found that the magnetic field could suppress the spin-up current, but enhance the spin-down current. Furthermore the spin-flip of current could be realized by changing the applied bias slightly. Therefore, it can be believed that our structure could behave as a good spin-filter.</jats:p> Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures Journal of Applied Physics
spellingShingle Ming, Y., Gong, J., Zhang, R. Q., Journal of Applied Physics, Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures, General Physics and Astronomy
title Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
title_full Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
title_fullStr Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
title_full_unstemmed Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
title_short Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
title_sort spin-polarized transport through znmnse/znse/znbese heterostructures
title_unstemmed Spin-polarized transport through ZnMnSe/ZnSe/ZnBeSe heterostructures
topic General Physics and Astronomy
url http://dx.doi.org/10.1063/1.3658852