论文标题
Andreev结合状态的自旋过滤测量
Spin-filtered measurements of Andreev bound states
论文作者
论文摘要
与超导体接近的半导体纳米线可以形成离散的粒子孔对称状态,称为Andreev结合状态(ABSS)。可以在其地面或具有不同自旋和奇偶校验的激发状态中找到ABS,例如具有均匀数量的旋转零单线状态或具有奇数电子的Spin-1/2 Doublet状态。考虑到均匀状态和奇数状态的自旋之间的差异,自旋过滤测量值可能会揭示潜在的基态。为了直接测量单电子激发的自旋,我们使用自旋极化量子点探测ABS,该量子点充当双极自旋滤波器,并在三端电路中与非极化隧道连接结合使用。我们观察到ABS的自旋偏振激发光谱,在某些情况下,尽管INSB纳米线中存在强旋转相互作用,但在某些情况下是完全自旋的偏振光谱。此外,将杂种与正常铅脱钩会阻断ABS弛豫,从而导致当前阻断ABS以激发状态捕获。如下所示,杂交纳米线设备的自旋偏置光谱是一种实验工具,以支持观察拓扑超导性。
A semiconductor nanowire brought in proximity to a superconductor can form discrete, particle-hole symmetric states, known as Andreev bound states (ABSs). An ABS can be found in its ground or excited states of different spin and parity, such as a spin-zero singlet state with an even number of electrons or a spin-1/2 doublet state with an odd number of electrons. Considering the difference between spin of the even and odd states, spin-filtered measurements have the potential to reveal the underlying ground state. To directly measure the spin of single-electron excitations, we probe an ABS using a spin-polarized quantum dot that acts as a bipolar spin filter, in combination with a non-polarized tunnel junction in a three-terminal circuit. We observe a spin-polarized excitation spectrum of the ABS, which in some cases is fully spin-polarized, despite the presence of strong spin-orbit interaction in the InSb nanowires. In addition, decoupling the hybrid from the normal lead blocks the ABS relaxation resulting in a current blockade where the ABS is trapped in an excited state. Spin-polarized spectroscopy of hybrid nanowire devices, as demonstrated here, is proposed as an experimental tool to support the observation of topological superconductivity.