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Microscopic derivation of magnon spin current in a topological insulator/ferromagnet heterostructure

机译:拓扑绝缘体/铁磁体异质结构中磁振子自旋电流的微观推导

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摘要

We investigate a spin-electricity conversion effect in a topological insulator/ferromagnet heterostructure. In the spin-momentum-locked surface state, an electric current generates nonequilibrium spin accumulation, which causes a spin-orbit torque that acts on the ferromagnet. When spins in the ferromagnet are completely parallel to the accumulated spin, this spin-orbit torque is zero. In the presence of spin excitations, however, a coupling between magnons and electrons enables us to obtain a nonvanishing torque. In this paper, we consider a model of the heterostructure in which a three-dimensional magnon gas is coupled with a two-dimensional massless Dirac electron system at the interface. We calculate the torque induced by an electric field, which can be interpreted as a magnon spin current, up to the lowest order of the electron-magnon interaction. We derive the expressions for high and low temperatures and estimate the order of magnitude of the induced spin current for realistic materials at room temperature.
机译:我们研究拓扑绝缘子/铁磁体异质结构中的自旋电转换效应。在自旋动量锁定的表面状态下,电流产生不平衡自旋累积,这会导致作用在铁磁体上的自旋轨道转矩。当铁磁体中的自旋完全平行于累积的自旋时,该自旋轨道转矩为零。但是,在存在自旋激发的情况下,磁振子和电子之间的耦合使我们能够获得不消失的转矩。在本文中,我们考虑了一种异质结构模型,其中三维磁振子气体与界面处的二维无质量迪拉克电子系统耦合。我们计算由电场感应的转矩,该转矩可以解释为磁振子自旋电流,直到电子-磁振子相互作用的最低阶。我们导出了高温和低温的表达式,并估计了室温下实际材料的感应自旋电流的量级。

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  • 来源
    《Physical Review. B, Condensed Matter》 |2017年第11期|115403.1-115403.8|共8页
  • 作者

    Nobuyuki Okuma; Kentaro Nomura;

  • 作者单位

    Department of Physics, University of Tokyo, Hongo 7-3-1, 113-0033, Japan;

    Institute for Materials Research, Tohoku University, Sendai 980-8577, Japan;

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