论文标题
在铁磁四方硅中的自旋转运的调制调制
Switching modulation of spin transport in ferromagnetic tetragonal silicene
论文作者
论文摘要
我们使用非平衡绿色功能方法研究了铁磁四方硅纳米纤维的带状结构和运输特性。在外部电场,势能,交换场和自旋轨道耦合的综合效果下,讨论了条带结构和自旋依赖性电导。人们可以通过更改纳米甲的横向宽度来轻松地实现从半金属到半导体状态的相变。自旋依赖性电导的分离是由交换场和自旋轨道耦合的效果引起的,而零导电行为表现出电场引起的自旋依赖性带隙。我们提出了具有两个中央通道的四端四方硅纳米替比的设备构型。发现可以通过使用两个开关来控制旋转电流。具有高电势屏障的开关可以阻止从中央散射区域流向其他终端的电子。有趣的是,仅应用一个开关可以实现自旋依赖性的零电导和较大的自旋极化。两个开关可以提供多个操作,以控制旋转依赖性传输属性。两道通道铁磁四方硅纳米替苯可以实现自旋电流的有效分离,这可能是自旋装置的潜在候选者。
We study the band structure and transport properties of ferromagnetic tetragonal silicene nanoribbons by using the non-equilibrium Green's function method. The band structure and spin-dependent conductance are discussed under the combined effect of the external electric field, potential energy, exchange field and the spin-orbit coupling. One can easily realize a phase transition from a semimetallic to a semiconducting state by changing the transverse width of the nanoribbon. Separation of spin-dependent conductances arises from the effect of exchange field and the spin-orbit coupling, while zero-conductance behaviors exhibit spin-dependent band gaps induced by the electric field. We propose a device configuration of four-terminal tetragonal silicene nanoribbon with two central channels. It is found that spin current can be controlled by utilizing two switches. The switch with a high potential barrier can block electrons flowing from the central scattering region into other terminals. Interestingly, applying only one switch can realize spin-dependent zero conductance and large spin polarization. Two switches can provide multiple operations for controlling spin-dependent transport properties. The two-channel ferromagnetic tetragonal silicene nanoribbon can realize an effective separation of spin current, which may be a potential candidate for spintronic devices.