Creation and detection of spin-polarized current in the scanning-tunneling-microscope

M. Sakurai, K. Liu, M. Aono
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Abstract

Spin polarization of carriers was studied when the carriers were being transported from a non-magnetic scanning-tunneling-microscope tip to a GaAs substrate through a ferromagnetic nanostructure at room temperature. The spin polarization was estimated by measuring the circular polarization of light created by a radiative recombination of the carriers in the GaAs sample. The circular polarization measured shows that non-spin-polarized carriers in the non-magnetic PtIr tip changed to spin-polarized ones in the GaAs substrate when they were transported through thin Fe layers. The high spin polarization of the carriers was caused by the unoccupied state of minority-band of the Fe layer and suggests a promising method to achieve spintronic devices at room temperature.
扫描隧道显微镜中自旋极化电流的产生与检测
研究了载流子在室温下通过铁磁纳米结构从非磁性扫描隧道显微镜尖端传输到砷化镓衬底时的自旋极化。自旋极化是通过测量砷化镓样品中载流子的辐射复合产生的光的圆偏振来估计的。圆极化测量结果表明,非磁性PtIr针尖上的非自旋极化载流子通过薄铁层传输后,转变为GaAs衬底上的自旋极化载流子。载流子的高自旋极化是由铁层少数带的未占据状态引起的,这为在室温下实现自旋电子器件提供了一种有前途的方法。
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