论文标题

用于超导电路的三元金属氧化物底物

Ternary Metal Oxide Substrates for Superconducting Circuits

论文作者

Degnan, Zach, He, Xin, Frieiro, Alejandro Gomez, Sachkou, Yauhen P., Fedorov, Arkady, Jacobson, Peter

论文摘要

底物材料缺陷和表面损失是限制超导量子电路无法达到构建可行量子计算机所需的规模和复杂性的主要因素之一。超导量子设备较高相干性的一条潜在路径是探索由于固有不同的表面化学作用而导致缺陷密度降低的新底物材料。在这里,我们检查了两种三元金属氧化物材料,尖晶石(MGAL2O4)和灯笼铝酸盐(Laalo3),重点是表面和界面表征和制备。在Laalo3上制造的设备的质量因子是早期设备的质量因素的三倍,我们归因于界面疾病的减少。 MGAL2O4是超导量子设备领域的一种新材料,即使在存在明显的表面障碍的情况下,也始终胜过Laalo3。我们的结果强调了材料探索,底物制备和表征的重要性,以识别适合高性能超导量子电路的材料。

Substrate material imperfections and surface losses are one of the major factors limiting superconducting quantum circuitry from reaching the scale and complexity required to build a practicable quantum computer. One potential path towards higher coherence of superconducting quantum devices is to explore new substrate materials with a reduced density of imperfections due to inherently different surface chemistries. Here, we examine two ternary metal oxide materials, spinel (MgAl2O4) and lanthanum aluminate (LaAlO3), with a focus on surface and interface characterization and preparation. Devices fabricated on LaAlO3 have quality factors three times higher than earlier devices, which we attribute to a reduction in interfacial disorder. MgAl2O4 is a new material in the realm of superconducting quantum devices and, even in the presence of significant surface disorder, consistently outperforms LaAlO3. Our results highlight the importance of materials exploration, substrate preparation, and characterization to identify materials suitable for high-performance superconducting quantum circuitry.

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