Marchenkov Alexei, Dai Zhenting, Donehoo Brandon, Barnett Robert N, Landman Uzi
Nat Nanotechnol. 2007 Aug;2(8):481-5. doi: 10.1038/nnano.2007.218. Epub 2007 Jul 22.
In 1962, Josephson made a celebrated prediction: when a constant voltage is applied across a thin insulator separating two superconductors, it will generate an oscillating current. These oscillations are ubiquitous in superconducting weak links of various geometries, and analogues have been found in other macroscopic quantum systems, such as superfluids and gaseous Bose-Einstein condensates. The interplay between the oscillating current and external microwave radiation of matching frequency (Shapiro steps) or with internal electrodynamic resonances (Fiske effect) appear as changes in the current-voltage characteristics of superconducting tunnel junctions and provide further insight into the phenomenon. Here, we report measurements and theoretical studies suggesting that Josephson current oscillations interact with atomic-scale mechanical motion as well. We formed a niobium dimer nanowire that acts as a weak link between two superconducting (bulk) niobium electrodes. We find features in the differential conductance through the dimer which we believe correspond to excitations of the dimer vibrational modes by Josephson oscillations and support our results with theoretical simulations.
1962年,约瑟夫森做出了一个著名的预测:当在分隔两个超导体的薄绝缘体上施加恒定电压时,会产生振荡电流。这些振荡在各种几何形状的超导弱连接中普遍存在,并且在其他宏观量子系统中也发现了类似现象,如超流体和气态玻色 - 爱因斯坦凝聚体。振荡电流与匹配频率的外部微波辐射(夏皮罗台阶)或内部电动力学共振(菲斯克效应)之间的相互作用,表现为超导隧道结电流 - 电压特性的变化,并为该现象提供了进一步的见解。在此,我们报告的测量和理论研究表明,约瑟夫森电流振荡也与原子尺度的机械运动相互作用。我们形成了一个铌二聚体纳米线,它作为两个超导(块状)铌电极之间的弱连接。我们在通过二聚体的微分电导中发现了一些特征,我们认为这些特征对应于约瑟夫森振荡对二聚体振动模式的激发,并通过理论模拟支持了我们的结果。