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Benchmarking near-term devices with quantum error correction
Quantum Science and Technology ( IF 5.6 ) Pub Date : 2020-08-02 , DOI: 10.1088/2058-9565/aba038
James R Wootton

Now that ever more sophisticated devices for quantum computing are being developed, we require ever more sophisticated benchmarks. This includes a need to determine how well these devices support the techniques required for quantum error correction. In this paper we introduce the topological_codes module of Qiskit-Ignis, which is designed to provide the tools necessary to perform such tests. Specifically, we use the RepetitionCode and GraphDecoder classes to run tests based on the repetition code and process the results. As an example, data from a 43 qubit code running on IBM’s Rochester device is presented.

中文翻译:

使用量子误差校正对近期设备进行基准测试

现在正在开发越来越复杂的用于量子计算的设备,我们需要越来越复杂的基准测试。这包括确定这些设备对量子误差校正所需技术的支持程度。在本文中,我们介绍了Qiskit-Ignis的topological_codes模块,该模块旨在提供执行此类测试所需的工具。具体来说,我们使用RepetitionCode和GraphDecoder类根据重复代码运行测试并处理结果。作为示例,展示了来自IBM Rochester设备上运行的43个量子比特代码的数据。
更新日期:2020-08-03
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