论文标题
与库仑排斥的库珀对分裂的平行inas纳米线
Parallel InAs nanowires for Cooper pair splitters with Coulomb repulsion
论文作者
论文摘要
最近可用由外延生长的超导体(SC)壳连接的两个平行的INAS纳米线组成的混合纳米结构。由于无缺陷的SC-副导体界面和两个准二维通道靠近,因此可以通过在所谓的库珀配对(CPS)过程中使用量子点(QD),将这些新型平台用于空间分离的电子对。 QD之间的最小化距离克服了单线基几何形状的局限性,并可以提高分裂效率。在这里,我们首次研究了这种设备中的CP,在此期间还存在强烈的库仑相互排斥并进行了彻底研究。从理论上讲,我们分析了库仑相互作用施加的CPS效率的轻微降低,并将其与实验进行比较。尽管交叉Andreev反射(CAR)与线际电容之间的竞争,但观察到明显的CPS信号,表明超导耦合的优势。我们的结果表明,与外延SC的平行INAS纳米线的应用是实现偏fermionic状态的有前途的途径,依靠电线之间的增强型汽车。
Hybrid nanostructures consisting of two parallel InAs nanowires connected by an epitaxially grown superconductor (SC) shell recently became available. Due to the defect-free SC-semiconductor interface and the two quasi-one-dimensional channels being close by, these novel platforms can be utilized to spatially separate entangled pairs of electrons by using quantum dots (QD) in the so-called Cooper pair splitting (CPS) process. The minimized distance between the QDs overcomes the limitations of single-wire-based geometries and can boost the splitting efficiency. Here we investigate CPS in such a device, for the first time, where strong inter-dot Coulomb repulsion is also present and studied thoroughly. We analyze theoretically the slight reduction of the CPS efficiency imposed by the Coulomb interaction and compare it to the experiments. Despite the competition between crossed Andreev reflection (CAR) and inter-wire capacitance, a significant CPS signal is observed indicating the dominance of the superconducting coupling. Our results demonstrate that the application of parallel InAs nanowires with epitaxial SC is a promising route for the realization of parafermionic states relying on enhanced CAR between the wires.