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Spin regulation in composite spin-filter barrier devices

机译:复合自旋过滤器屏障装置中的自旋调节

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Magnetic insulators are known to provide large effective Zeeman fields that are confined at an interface, making them especially powerful in modifying adjacent one-or two-dimensional electronic structures. Utilizing this phenomenon and the other important property of magnetic insulators-spin filtering-here we report the generation and subsequent detection of a large interface field, as large as tens of tesla in EuS/Al/EuS heterostructures with metallic coulomb islands confined within a magnetic insulator barrier. The unique energy profile across this sandwich structure produces spin-assisted charge transfer across the device, generating a spontaneous spin current and voltage. These unique properties can be practical for controlling spin flows in electronic devices and for energy harvesting.RI Miao, Guo-Xing/A-2411-2008OI Miao, Guo-Xing/0000-0002-8735-8077
机译:众所周知,磁绝缘体可以提供有效的塞曼场,该场被限制在界面上,从而使其在改变相邻的一维或二维电子结构方面特别有效。利用这种现象和磁绝缘子的另一个重要特性-自旋滤波-在这里我们报告了大界面场的产生和随后的检测,该大界面场在含金属库仑岛的EuS / Al / EuS异质结构中被限制在一个磁场中绝缘体屏障。跨此夹层结构的独特能量分布在整个器件上产生了自旋辅助的电荷转移,产生了自发的自旋电流和电压。这些独特的属性对于控制电子设备中的自旋流和进行能量收集非常实用.RI Miao,Guo-Xing / A-2411-2008OI Miao,Guo-Xing / 0000-0002-8735-8077

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