Optical transmission of microwave control signal towards large-scale superconducting quantum computing

Author:

Li Na,Li Yu-Huai,Fan Dao-Jin,Han Lian-Chen,Xu Yu,Lin Jin,Guo Cheng,Li Dong-Dong1ORCID,Gong Ming,Liao Sheng-KaiORCID,Zhu Xiao-Bo,Peng Cheng-Zhi

Affiliation:

1. QuantumCTek Co., Ltd.

Abstract

With the rapid development of superconducting quantum computing and the implementation of surface code, large-scale quantum computing is emerging as an urgent demand. In a superconducting computing system, the qubit is maintained in a cryogenic environment to avoid thermal excitation. Thus, the transmission of control signals, which are generated at room temperature, is needed. Typically, the transmission of these signals to the qubit relies on a coaxial cable wiring approach. However, in a large-scale computing system with hundreds or even thousands of qubits, the coaxial cables will pose great space and heat load to the dilution refrigerator. Here, to tackle this problem, we propose and demonstrate a direct-modulation-based optical transmission line. In our experiment, the average single-qubit XEB error and control error are measured as 0.139% and 0.014% separately, demonstrating the feasibility of the optical wiring approach and paving the way for large-scale superconducting quantum computing.

Funder

Youth Innovation Promotion Association of the Chinese Academy of Sciences

Chinese Academy of Sciences

Open Research Fund from State Key Laboratory of High Performance Computing of China

China Postdoctoral Science Foundation

Anhui Initiative in Quantum Information Technologies

Shanghai Sailing Program

Shanghai Rising-Star Program

National Natural Science Foundation of China

Shanghai Municipal Science and Technology Major Project

The Innovation Program for Quantum Science and Technology

Publisher

Optica Publishing Group

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