论文标题
对niobium超导量子的表面氧化物产生化学和结构性理解
Developing a Chemical and Structural Understanding of the Surface Oxide in a Niobium Superconducting Qubit
论文作者
论文摘要
Niobium的超导薄膜已广泛用于Transmon Qubit架构中。尽管近年来这些体系结构表现出显着的改善,但通过材料工程的性能进一步改善将有助于大规模部署。在这里,我们使用从次级离子质谱法和电子显微镜中检索到的信息来对表面氧化物进行详细评估,该评估是在环境条件下形成的Transmon Test Qubit Qubit设备,该Qubit从Niobium膜上模仿。我们观察到,这种氧化物与NBO和NBO $ _2 $发现了变化的化学计量,发现更接近Niobium Film,NB $ _2 $ o $ _5 $发现更靠近地面。在结构分析方面,我们发现NB $ _2 $ o $ _5 $区域本质上是半晶体的,并且以1-2 nm的顺序展示了与单斜n-nb $ _2 $ _5 $相对应的1-2 nm的订单,这些晶粒分散在整个不良矩阵中。使用波动电子显微镜,我们能够用纳米空间分辨率绘制NB $ _2 $ o $ _5 $区域中的相对结晶度。通过这种相关方法,我们观察到无定形区域更有可能包含氧空位,并在氮化原子和氧原子之间表现出较弱的键。基于这些发现,我们预计氧空位可能是量子系统中的脱碳机制。
Superconducting thin films of niobium have been extensively employed in transmon qubit architectures. Although these architectures have demonstrated remarkable improvements in recent years, further improvements in performance through materials engineering will aid in large-scale deployment. Here, we use information retrieved from secondary ion mass spectrometry and electron microscopy to conduct a detailed assessment of the surface oxide that forms in ambient conditions for transmon test qubit devices patterned from a niobium film. We observe that this oxide exhibits a varying stoichiometry with NbO and NbO$_2$ found closer to the niobium film and Nb$_2$O$_5$ found closer to the surface. In terms of structural analysis, we find that the Nb$_2$O$_5$ region is semicrystalline in nature and exhibits randomly oriented grains on the order of 1-2 nm corresponding to monoclinic N-Nb$_2$O$_5$ that are dispersed throughout an amorphous matrix. Using fluctuation electron microscopy, we are able to map the relative crystallinity in the Nb$_2$O$_5$ region with nanometer spatial resolution. Through this correlative method, we observe that amorphous regions are more likely to contain oxygen vacancies and exhibit weaker bonds between the niobium and oxygen atoms. Based on these findings, we expect that oxygen vacancies likely serve as a decoherence mechanism in quantum systems.