量子位元
超导电性
退火(玻璃)
激光器
连贯性(哲学赌博策略)
超导量子计算
薄脆饼
材料科学
磁通量子比特
光电子学
量子
物理
光学
凝聚态物理
量子力学
复合材料
作者
Hyunseong Kim,Christian Jünger,Alexis Morvan,Edward S. Barnard,William P. Livingston,M. Virginia P. Altoé,Yosep Kim,Chengyu Song,Larry Chen,John Mark Kreikebaum,D. Frank Ogletree,David Santiago,Irfan Siddiqi
摘要
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 addition, we perform noise spectroscopy to investigate the change in defect features, in particular, two-level system defects, after laser-annealing. 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 step toward both understanding the underlying physical mechanism and scaling up laser-annealing of superconducting qubits.
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