用于开发通量流型约瑟夫森振荡器的Nb/MoGe混合约瑟夫森结

IF 1.7 3区 物理与天体物理 Q3 ENGINEERING, ELECTRICAL & ELECTRONIC
Ivan P. Nevirkovets
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引用次数: 0

摘要

制备了具有层状Nb/MoGe电极的Josephson结(JJs),并在4.2 K下进行了表征。Mo0.75Ge0.25是一种超导体,其转变温度高达7.4 K。它本质上是一种非晶材料,具有薄膜形式的非常均匀和光滑的表面。这使我们能够制造出高质量的全moge Josephson结和非常薄的Al层,形成AlOx势垒[Supercond]。科学。抛光工艺。,第35卷,第2条。035008年,2022]。在这里,我们报道了具有复合Nb/MoGe电极的JJs,旨在开发适用于量子比特控制的低频磁流型约瑟夫森振荡器。使用MoGe可以保持较大的有效磁穿透深度和电极的高动态电感,从而导致(i)驻波(Fiske)共振发生在较低的频率,以及(ii)振荡器的较高阻抗;后者对于将其与超导电路的其他元件匹配非常重要。同时,使用铌作为复合电极的一部分,可以使JJ的关键参数(临界电流和电压)保持在与铌基JJ相近的水平。此外,混合Nb/MoGe JJs的阻尼比全MoGe JJs低,这导致了更高的磁通流阶电流,并可能导致更高的微波发射功率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hybrid Nb/MoGe Josephson Junctions for the Development of Flux-Flow-Type Josephson Oscillators
Josephson junctions (JJs) with layered Nb/MoGe electrodes were fabricated and characterized at 4.2 K. Mo 0.75 Ge 0.25 is known to be a superconductor with the transition temperature of up to 7.4 K. It is essentially an amorphous material that has very uniform and smooth surface in thin-film form. This allowed us to fabricate high-quality all-MoGe Josephson junctions with very thin Al overlayer to form AlO x barrier [Supercond. Sci. Technol., vol. 35, Article no. 035008, 2022]. Here we report JJs with composite Nb/MoGe electrodes aiming at development of flux-flow-type Josephson oscillators operating at low frequencies suitable for qubit control. Using MoGe allows one to preserve a large effective magnetic penetration depth and a high kinetic inductance of the electrodes, which results in ( i ) a standing wave (Fiske) resonance to occur at lower frequencies, and ( ii ) in a higher impedance of the oscillator; the latter is important for matching it with other elements of the superconducting circuit. At the same time, using Nb as a part of the composite electrode allows one to maintain the critical parameters (critical current and voltage) of the JJ close to those of the Nb-based JJs. In addition, damping in hybrid Nb/MoGe JJs is lower than that in all-MoGe JJs, which results in a higher current of flux-flow steps, and potentially, in a higher microwave emission power.
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来源期刊
IEEE Transactions on Applied Superconductivity
IEEE Transactions on Applied Superconductivity 工程技术-工程:电子与电气
CiteScore
3.50
自引率
33.30%
发文量
650
审稿时长
2.3 months
期刊介绍: IEEE Transactions on Applied Superconductivity (TAS) contains articles on the applications of superconductivity and other relevant technology. Electronic applications include analog and digital circuits employing thin films and active devices such as Josephson junctions. Large scale applications include magnets for power applications such as motors and generators, for magnetic resonance, for accelerators, and cable applications such as power transmission.
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