首页> 外文期刊>Physical review. B, Condensed Matter And Materials Physics >Magnitude of magnetic field dependence of a possible selective spin filter in ZnSe/Zn_(1-x)Mn_xSe multilayer heterostructures
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Magnitude of magnetic field dependence of a possible selective spin filter in ZnSe/Zn_(1-x)Mn_xSe multilayer heterostructures

机译:ZnSe / Zn_(1-x)Mn_xSe多层异质结构中可能的选择性自旋滤波器的磁场依赖性大小

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摘要

Spin-polarized transport through a band-gap-matched ZnSe/Zn_(1-x)Mn_xSe/ZnSe/Zn_(1-x)Mn_xSe/ZnSe multilayer structure is investigated. The resonant transport is shown to occur at different energies for different spins owing to the split of spin subbands in the paramagnetic layers. It is found that the polarization of current density can be reversed in a certain range of magnetic field, with the peak of polarization moving towards a stronger magnetic field for increasing the width of central ZnSe layer while shifting towards an opposite direction for increasing the width of paramagnetic layer. The reversal is limited in a small-size system. A strong suppression of the spin up component of the current density is present at high magnetic field. It is expected that such a reversal of the polarization could act as a possible mechanism for a selective spin filter device.
机译:研究了通过带隙匹配的ZnSe / Zn_(1-x)Mn_xSe / ZnSe / Zn_(1-x)Mn_xSe / ZnSe多层结构的自旋极化传输。由于顺磁层中自旋子带的分裂,谐振传输显示为不同的自旋以不同的能量发生。发现在一定的磁场范围内电流密度的极化可以反转,极化的峰值移向更强的磁场以增加中心ZnSe层的宽度,而移向相反的方向以增加CnSe的宽度。顺磁性层。在小型系统中,反转是有限的。在高磁场下会强烈抑制电流密度的自旋分量。期望极化的这种反转可以用作选择性自旋滤波器装置的可能机制。

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