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首页> 外文期刊>Physical Review, B. Condensed Matter >Longitudinal spin transport in diluted magnetic semiconductor superlattices: The effect of the giant Zeeman splitting - art. no. 155211
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Longitudinal spin transport in diluted magnetic semiconductor superlattices: The effect of the giant Zeeman splitting - art. no. 155211

机译:稀磁半导体超晶格中的纵向自旋输运:巨大的塞曼分裂效应-艺术。没有。 155211

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摘要

Longitudinal spin transport in diluted magnetic semiconductor superlattices is investigated theoretically. The longitudinal magnetoconductivity (MC) in such systems exhibits an oscillating behavior as function of an external magnetic field. In the weak magnetic-field region the giant Zeeman splitting plays a dominant role that leads to a large negative magnetoconductivity. In the strong magnetic-field region the MC exhibits deep dips with increasing magnetic field. The oscillating behavior is attributed to the interplay between the discrete Landau levels and the Fermi surface. The decrease of the MC at low magnetic field is caused by the s-d exchange interaction between the electron in the conduction band and the magnetic ions. The spin polarization increases rapidly with increasing magnetic field and the longitudinal current becomes spin polarized in strong magnetic field. The effect of spin-disorder scattering on MC is estimated numerically for low magnetic fields and found to be neglectible for our system. [References: 30]
机译:理论上研究了稀磁半导体超晶格中的纵向自旋输运。在这样的系统中,纵向磁导率(MC)表现出作为外部磁场的函数的振荡行为。在弱磁场区域,巨大的塞曼分裂起主要作用,导致较大的负磁导率。在强磁场区域,MC会随着磁场的增加而出现深陷。振荡行为归因于离散的朗道能级和费米表面之间的相互作用。在低磁场下,MC的降低是由导带中的电子与磁性离子之间的s-d交换相互作用引起的。随着磁场的增加,自旋极化迅速增加,并且纵向电流在强磁场中变得自旋极化。对于低磁场,数值估计了自旋无序散射对MC的影响,并且对于我们的系统而言可以忽略不计。 [参考:30]

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