QuTech, Delft University of Technology, Delft, The Netherlands.
Kavli Institute of Nanoscience, Delft University of Technology, Delft, The Netherlands.
Nature. 2023 Feb;614(7948):445-450. doi: 10.1038/s41586-022-05585-1. Epub 2023 Feb 15.
Majorana bound states constitute one of the simplest examples of emergent non-Abelian excitations in condensed matter physics. A toy model proposed by Kitaev shows that such states can arise at the ends of a spinless p-wave superconducting chain. Practical proposals for its realization require coupling neighbouring quantum dots (QDs) in a chain through both electron tunnelling and crossed Andreev reflection. Although both processes have been observed in semiconducting nanowires and carbon nanotubes, crossed-Andreev interaction was neither easily tunable nor strong enough to induce coherent hybridization of dot states. Here we demonstrate the simultaneous presence of all necessary ingredients for an artificial Kitaev chain: two spin-polarized QDs in an InSb nanowire strongly coupled by both elastic co-tunnelling (ECT) and crossed Andreev reflection (CAR). We fine-tune this system to a sweet spot where a pair of poor man's Majorana states is predicted to appear. At this sweet spot, the transport characteristics satisfy the theoretical predictions for such a system, including pairwise correlation, zero charge and stability against local perturbations. Although the simple system presented here can be scaled to simulate a full Kitaev chain with an emergent topological order, it can also be used imminently to explore relevant physics related to non-Abelian anyons.
马约拉纳束缚态是凝聚态物理中涌现的非阿贝尔激发的最简单例子之一。Kitaev 提出的一个模型表明,这种态可以出现在无自旋 p 波超导链的末端。实现这一模型的实际方案需要通过电子隧穿和交叉安德烈夫反射来耦合链中的相邻量子点(QD)。虽然这两个过程在半导体纳米线和碳纳米管中都已经被观察到,但交叉安德烈夫相互作用既不容易调节,也不够强,无法诱导点态的相干杂化。在这里,我们展示了人工 Kitaev 链的所有必要成分同时存在的情况:两个 InSb 纳米线中的自旋极化量子点通过弹性共隧穿(ECT)和交叉安德烈夫反射(CAR)强烈耦合。我们对这个系统进行微调,使其达到一个预测会出现一对穷人版马约拉纳态的最佳点。在这个最佳点,输运特性符合该系统的理论预测,包括成对相关、零电荷和对局部扰动的稳定性。虽然这里提出的简单系统可以扩展为模拟具有涌现拓扑序的完整 Kitaev 链,但它也可以立即用于探索与非阿贝尔任意子相关的相关物理。