Calibration and cancellation of microwave crosstalk in superconducting circuits
Haisheng 海生 Yan 严, Shoukuan 寿宽 Zhao 赵, Zhongcheng Xiang, Ziting 子婷 Wang 王, Zhaohua 钊华 Yang 杨, Kai 凯 Xu 许, Ye 野 Tian 田, Haifeng 海峰 Yu 于, Dongning 东宁 Zheng 郑, Heng 桁 Fan 范, Shiping 士平 Zhao 赵 · Chinese Physics B · 2023
The precise control and manipulation of the qubit state are vital for quantum simulation and quantum computation. In superconducting circuits, one notorious error comes from the crosstalk of microwave signals applied to different qubit control lines. In this work, we present a method for the calibration and cancellation of the microwave crosstalk and experimentally demonstrate its effectiveness in a superconducting 10-qubit chain. The method is convenient and efficient especially for calibrating the microwave crosstalk with large amplitudes and variations, which can be performed successively to reduce the microwave crosstalk by two to three orders. The qubit chain with microwave driving is governed by one-dimensional (1D) Bose–Hubbard model in transverse field, which is nonintegrable and shows thermalization behaviour during the time evolution from certain initial states. Such thermalization process is observed with excellent agreement between experiment and theory further confirming the effective global cancellation of the microwave crosstalk.