论文标题
激光解压缩对固定频率超导码头的影响
Effects of Laser-Annealing on Fixed-Frequency Superconducting Qubits
论文作者
论文摘要
随着超导量子处理器的复杂性的增加,需要克服频率拥挤的限制技术。最近开发的激光耗电方法提供了一种有效的后制作方法,以调整超导Qubits的频率。在这里,我们提出了基于常规显微镜成分的自动激光耗电设备,并证明了高度相干的传输的保留。在一种情况下,我们观察到激光解压缩后相干性增加了两倍,并在此量子位上执行噪声光谱,以研究缺陷特征的变化,特别是两级系统缺陷。最后,我们提出了一个局部加热模型,并展示了在晶圆尺度上进行激光减速的衰老稳定性。我们的工作构成了了解潜在的物理机制和扩大超导码头的激光消耗的重要第一步。
As superconducting quantum processors increase in complexity, techniques to overcome constraints on frequency crowding are needed. The recently developed method of laser-annealing provides an effective post-fabrication method to adjust the frequency of superconducting qubits. Here, we present an automated laser-annealing apparatus based on conventional microscopy components and demonstrate preservation of highly coherent transmons. In one case, we observe a two-fold increase in coherence after laser-annealing and perform noise spectroscopy on this qubit to investigate the change in defect features, in particular two-level system defects. Finally, we present a local heating model as well as demonstrate aging stability for laser-annealing on the wafer scale. Our work constitutes an important first step towards both understanding the underlying physical mechanism and scaling up laser-annealing of superconducting qubits.