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Superconducting Qubits Quantum Simulation

High fidelity control of superconducting qubits with optical transmitted signal

arXiv
Authors: Yu-Huai Li, Daojin Fan, Na Li, Fusheng Chen, Shaowei Li, Dong-Dong Li, Yu Xu, Jin Lin, Ming Gong, He-Liang Huang, Hui Deng, Yulin Wu, Haoran Qian, Shaojun Guo, Futian Liang, Xiaobo Zhu, Cheng-Zhi Peng, Jian-Wei Pan

Year

2026

Paper ID

76587

Status

Preprint

Abstract Read

~2 min

Abstract Words

120

Citations

N/A

Abstract

Superconducting circuits exhibit remarkable potential for constructing large-scale quantum simulation and computation systems, featuring numerous qubits, extended coherence time, and precise control. Nevertheless, the growing number of signal cables poses a challenge in dilution refrigerators due to space and heat load constraints. To overcome this issue, we experimentally implemented an optically-assisted transmission line as an alternative to coaxial cables. By modulating microwave signals on laser intensities at room temperature and regenerating the signals at a cryogenic plate within the dilution refrigerator, we demonstrated full control of superconducting qubits using photocurrent. We demonstrate and benchmark both single-qubit and two-qubit gates on frequency tunable transmon qubits, achieving fidelities of 99.915% pm 0.005% and 99.676% pm 0.041%, respectively, which have reached the requirement of the surface code.

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  • This paper contributes to the Quantum Simulation research area in the Quantum Articles archive.
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  • Superconducting circuits exhibit remarkable potential for constructing large-scale quantum simulation and computation systems, featuring numerous qubits, extended coherence...

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