论文标题
从巨型Rashba自旋轨道导体bitebr的电气控制的自旋注入
Electrically Controlled Spin Injection from Giant Rashba Spin-Orbit Conductor BiTeBr
论文作者
论文摘要
铁磁材料是Spintronic设备中广泛使用的自旋偏振电子的来源,该材料由外部磁场或自旋转移扭矩方法控制。但是,随着对较小和更快的自旋组件的需求不断增长,自旋轨道现象的利用提供了有希望的替代方案。具有独特自旋纹理的新材料是非常需要的,因为可以预期全电动创造和对自旋极化的控制,在不使用磁场的情况下,可以定义强度以及偏振的任意方向。在这项工作中,我们为此目的使用了一种新型的自旋轨道晶体bitebr。拥有其巨大的Rashba自旋分裂,由电流在室温下创建散装自旋极化。将Bitebr晶体整合到基于石墨烯的自旋阀设备中,我们首次证明它是电流控制的自旋喷油器,为在集成电路中的未来自旋应用开辟了新的途径。
Ferromagnetic materials are the widely used source of spin-polarized electrons in spintronic devices, which are controlled by external magnetic fields or spin-transfer torque methods. However, with increasing demand for smaller and faster spintronic components, utilization of spin-orbit phenomena provides promising alternatives. New materials with unique spin textures are highly desirable since all-electric creation and control of spin polarization is expected, where the strength, as well as an arbitrary orientation of the polarization, can be defined without the use of a magnetic field. In this work, we use a novel spin-orbit crystal BiTeBr for this purpose. Owning to its giant Rashba spin splitting, bulk spin polarization is created at room temperature by an electric current. Integrating BiTeBr crystal into graphene-based spin valve devices, we demonstrate for the first time that it acts as a current-controlled spin injector, opening new avenues for future spintronic applications in integrated circuits.