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Theoretical Studies on Spin-Dependent Conductance in FePt/MgO/FePt(001) Magnetic Tunnel Junctions

机译:FePt / MgO / FePt(001)磁性隧道结中自旋相关电导的理论研究

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The spin-dependent transport properties of FePt/MgO/FePt(001) magnetic tunnel junctions have been investigated on the basis of first-principles electronic structure calculations. The totally symmetric $Delta_{1}$-band predominantly contributes to the tunneling conductance for both the majority and the minority-spin channels. In the parallel magnetization configuration, the tunneling conductance via the majority-spin channel shows almost the same values for the junctions with the Fe- and Pt-terminated interfaces. On the other hand, the tunneling conductance via the minority-spin channel for the Fe-terminated interface is two orders of magnitude smaller than that through the Pt-terminated interface. The tunneling magnetoresistance ratio evaluated for the junction with the Fe-terminated interface exceeds 380%, which is in contrast to about 70% for that with the Pt-terminated interface.
机译:FePt / MgO / FePt(001)磁性隧道结的自旋依赖性输运性质已在第一性原理电子结构计算的基础上进行了研究。完全对称的$ Delta_ {1} $频段主要有助于大多数和少数旋转通道的隧穿电导。在平行磁化配置中,通过多数自旋通道的隧穿电导对于与Fe和Pt端接的界面的结显示几乎相同的值。另一方面,对于Fe端接的界面,通过少数自旋通道的隧穿电导比通过Pt端接的界面的隧穿电导小两个数量级。对于与铁端接的界面的结,所评估的隧穿磁阻比超过380%,而与铂端接的界面的隧穿磁阻比约为70%。

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