论文标题
Josephson连接的二极管效应,带有单个磁原子
Diode effect in Josephson junctions with a single magnetic atom
论文作者
论文摘要
电子设备中的电流流量可能不对称,这是偏置方向,这是二极管效用的基础现象,被称为非重点电荷转运。耗散电子产品的希望最近刺激了对超导二极管的追求,并且在各种非中心对称系统中已经实现了非重生超导设备。探测微型化的最终限制,我们在扫描隧道显微镜中创建了原子级PB-PB Josephson连接。通过单个PB原子稳定的原始连接处表现出滞后行为,证实了连接的高质量,但偏置方向之间没有不对称性。当将单个磁原子插入连接处时,非转向超级气流会出现,其优选方向取决于原子种类。在理论建模的帮助下,我们将非循环性追踪到超导能量差距内部通过Yu-Shiba-Rusinov(YSR)状态流动的准粒子电流。我们的结果开辟了新的途径,用于创建原子级约瑟夫森二极管,并通过单原子操纵来调整其性质。
Current flow in electronic devices can be asymmetric with bias direction, a phenomenon underlying the utility of diodes and known as non-reciprocal charge transport. The promise of dissipationless electronics has recently stimulated the quest for superconducting diodes, and non-reciprocal superconducting devices have been realized in various non-centrosymmetric systems. Probing the ultimate limits of miniaturization, we have created atomic-scale Pb--Pb Josephson junctions in a scanning tunneling microscope. Pristine junctions stabilized by a single Pb atom exhibit hysteretic behavior, confirming the high quality of the junctions, but no asymmetry between the bias directions. Non-reciprocal supercurrents emerge when inserting a single magnetic atom into the junction, with the preferred direction depending on the atomic species. Aided by theoretical modelling, we trace the non-reciprocity to quasiparticle currents flowing via Yu-Shiba-Rusinov (YSR) states inside the superconducting energy gap. Our results open new avenues for creating atomic-scale Josephson diodes and tuning their properties through single-atom manipulation.