论文标题
超导薄膜中无处不在的超导二极管效应
Ubiquitous Superconducting Diode Effect in Superconductor Thin Films
论文作者
论文摘要
超导体中的宏观连贯性支持无耗散的超电流,这可能在新兴的量子技术中起着核心作用。在向前和向后方向上完成不平等的超电流将实现前所未有的功能。临界超电流的这种非转录称为超导(SC)二极管效应。我们在常规SC薄膜(例如niobium and Vanadium)中表现出强大的SC二极管效应,其外部磁场小至1 OE。将SC层与铁磁半导体EUS接口,我们进一步完成了非挥发性SC二极管效应,达到了65%的巨大效率。通过仔细的控制实验和理论建模,我们证明了SC薄膜中的临界超流量可以通过不对称的涡旋边缘/表面屏障和临界电流的通用Meissner筛选电流来轻松完成。我们对简单系统中SC二极管效应的工程为新技术打开了大门。同时,我们揭示了Meissner筛选效果在超导膜中引起的SC二极管效应的无处不在,应在寻找具有有限的Momentum Cooper配对的异国情调的超导状态时,应格外小心地消除。
The macroscopic coherence in superconductors supports dissipationless supercurrents which could play a central role in emerging quantum technologies. Accomplishing unequal supercurrents in the forward and backward directions would enable unprecedented functionalities. This nonreciprocity of critical supercurrents is called superconducting (SC) diode effect. We demonstrate strong SC diode effect in conventional SC thin films, such as niobium and vanadium, employing external magnetic fields as small as 1 Oe. Interfacing the SC layer with a ferromagnetic semiconductor EuS, we further accomplish non-volatile SC diode effect reaching a giant efficiency of 65%. By careful control experiments and theoretical modeling, we demonstrate that the critical supercurrent nonreciprocity in SC thin films could be easily accomplished with asymmetrical vortex edge/surface barriers and the universal Meissner screening current governing the critical currents. Our engineering of the SC diode effect in simple systems opens door for novel technologies. Meanwhile, we reveal the ubiquity of Meissner screening effect induced SC diode effect in superconducting films, which should be eliminated with great care in the search of exotic superconducting states harboring finite-momentum Cooper pairing.