论文标题
三维半金属中的磁性电子准直
Magnetic electron collimation in three-dimensional semi-metals
论文作者
论文摘要
垂直于磁场移动的电子局限于回旋轨道,但它们可以自由地平行于该场。这个简单的事实导致在清洁,低载体密度半金属中的复杂电流流动,例如当电流通过类似点状的收缩时,沿磁场形成的长期电流喷气机。 “当前喷射”的现象偶然发生在目前的注射触点上,困扰着纵向磁耐药性的研究,这在拓扑导体中尤为重要。在这里,我们证明了从狄拉克半米CD3AS2晶体加工的新的微型设备中,紧密聚焦的电子梁的受控产生。可以通过倾斜磁场来指导电流梁,并通过磁场强度调节其范围。有限元仿真将梁转向它们时在遥远的接触处诱导的电压,从而支持受控电子喷气机的图片。这些实验证明了对当前喷射状态中3D半金属所独有的高度非局部信号传播的首次直接控制,并且可能导致类似于电子光学在自由空间中的新型应用。
While electrons moving perpendicular to a magnetic field are confined to cyclotron orbits, they can move freely parallel to the field. This simple fact leads to complex current flow in clean, low carrier density semi-metals, such as long-ranged current jets forming along the magnetic field when currents pass through point-like constrictions. Occurring accidentally at imperfect current injection contacts, the phenomenon of "current jetting" plagues the research of longitudinal magneto-resistance which is particularly important in topological conductors. Here we demonstrate the controlled generation of tightly focused electron beams in a new class of micro-devices machined from crystals of the Dirac semi-metal Cd3As2. The current beams can be guided by tilting a magnetic field and their range tuned by the field strength. Finite element simulations quantitatively capture the voltage induced at faraway contacts when the beams are steered towards them, supporting the picture of controlled electron jets. These experiments demonstrate the first direct control over the highly nonlocal signal propagation unique to 3D semi-metals in the current jetting regime, and may lead to novel applications akin to electron optics in free space.