Comparing Shor and Steane error correction using the Bacon-Shor code

IF 11.7 1区 综合性期刊 Q1 MULTIDISCIPLINARY SCIENCES Science Advances Pub Date : 2024-11-06 DOI:10.1126/sciadv.adp2008
Shilin Huang, Kenneth R. Brown, Marko Cetina
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Abstract

Quantum states decohere through interaction with the environment. Quantum error correction can preserve coherence through active feedback wherein quantum information is encoded into a logical state with a high degree of symmetry. Perturbations are detected by measuring the symmetries of the state and corrected by applying gates based on these measurements. To measure the symmetries without perturbing the data, ancillary quantum states are required. Shor error correction uses a separate quantum state for the measurement of each symmetry. Steane error correction maps the perturbations onto a logical ancilla qubit, which is then measured to check several symmetries simultaneously. We experimentally compare Shor and Steane correction of bit flip errors using the Bacon-Shor code implemented in a chain of 23 trapped atomic ions. We find that the Steane method produces fewer errors after a single round of error correction and less disturbance to the data qubits without error correction.
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使用培根-肖尔代码比较肖尔和斯泰恩纠错法
量子态通过与环境的相互作用而解旋。量子纠错可以通过主动反馈保持一致性,在主动反馈中,量子信息被编码为具有高度对称性的逻辑状态。通过测量状态的对称性来检测扰动,并根据这些测量结果应用门进行纠错。要在不干扰数据的情况下测量对称性,需要辅助量子态。肖尔误差修正使用单独的量子态来测量每个对称性。Steane 误差校正将扰动映射到逻辑辅助量子比特上,然后对其进行测量,以同时检查多个对称性。我们利用在 23 个被困原子离子链中实施的 Bacon-Shor 代码,对 Shor 和 Steane 的位翻转误差校正进行了实验比较。我们发现,Steane 方法在单轮纠错后产生的错误更少,而且在不纠错的情况下对数据量子比特的干扰也更小。
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来源期刊
Science Advances
Science Advances 综合性期刊-综合性期刊
CiteScore
21.40
自引率
1.50%
发文量
1937
审稿时长
29 weeks
期刊介绍: Science Advances, an open-access journal by AAAS, publishes impactful research in diverse scientific areas. It aims for fair, fast, and expert peer review, providing freely accessible research to readers. Led by distinguished scientists, the journal supports AAAS's mission by extending Science magazine's capacity to identify and promote significant advances. Evolving digital publishing technologies play a crucial role in advancing AAAS's global mission for science communication and benefitting humankind.
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