Cite this article:
Tingjin Chen, Jiawei Zhang, Zhiyi Wu, Rui Wang, Zhili Zhong, Peisheng Huang, Ruyi Kang, Zechen Guo, Yongqi Liang, Daxiong Sun, Xuandong Sun, Zimu Yang, Xiaohan Yang, Yubin Zhang, Jin Zhou, Jiawei Qiu, Ji Chu, Ji Jiang, Xiayu Linpeng, Jiajian Zhang, Yuefeng Yuan, Song Liu, Junhua Zhang, Jingjing Niu, Dapeng Yu. An Integrated Broadband Low-Noise Microwave Source for Superconducting Quantum CircuitsJ. Chin. Phys. B.
| Tingjin Chen, Jiawei Zhang, Zhiyi Wu, Rui Wang, Zhili Zhong, Peisheng Huang, Ruyi Kang, Zechen Guo, Yongqi Liang, Daxiong Sun, Xuandong Sun, Zimu Yang, Xiaohan Yang, Yubin Zhang, Jin Zhou, Jiawei Qiu, Ji Chu, Ji Jiang, Xiayu Linpeng, Jiajian Zhang, Yuefeng Yuan, Song Liu, Junhua Zhang, Jingjing Niu, Dapeng Yu. An Integrated Broadband Low-Noise Microwave Source for Superconducting Quantum CircuitsJ. Chin. Phys. B. |
An Integrated Broadband Low-Noise Microwave Source for Superconducting Quantum Circuits
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Abstract
Scaling superconducting quantum processors increasingly relies on custom control electronics that can simultaneously satisfy spectral purity, multi-channel isolation, and long-term stability within a compact and integrated platform. Here we present Quantum microwave source (QMW), a classical three-channel broadband low-noise microwave source that consolidates qubit XY drive, readout excitation, and Josephson parametric amplifier (JPA) pump generation onto a single hardware module operating from 4 to 14 GHz with an output power range of -20 to +10 dBm. Electronic characterization yields a spurious-free dynamic range greater than 55 dB, equivalently a largest spur below -55 dBc, a phase noise as low as -110 dBc/Hz at 10 kHz offset for a 5 GHz carrier and below -103 dBc/Hz at the same offset across the full band, and output power stability within 0.1 dB over 24 hours. Integrated into the control chain of a 36-qubit superconducting processor, QMW pumps a JPA to 19.2 dB gain to enable high-SNR single-shot readout, while sustaining qubit coherence times of T1 = 60.1 ± 0.8 μs, T2,Ramsey = 24.2 ± 1.5 μs, and T2,echo = 58.6 ± 2.1 μs, and an average single-qubit gate fidelity of 99.95 ± 0.05% measured by randomized benchmarking. The compact and modular nature of QMW provides a scalable microwave generation solution for largescale superconducting quantum processors, with potential extensions to other quantum hardware platforms and precision measurement applications. -
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