容错的单位加法,具有最小的有趣颜色代码
Yang Wang1,2, Selwyn Simsek3, Thomas M Gatterman4
1QuTech, Delft University of Technology, PO Box 5046, 2600 GA Delft, Netherlands.
Science advances
|July 19, 2024
概括
这项研究使用X颜色代码在被困离子量子计算机上演示了容错的1量子比特加法. 与未编码电路相比,这种方法显著减少了错误,为实际的量子计算铺平了道路.
科学领域:
- 量子计算是一种量子计算.
- 量子错误纠正方法 量子错误纠正方法
背景情况:
- 稳定器代码是量子错误抑制的标准,但与非克利福德操作作斗争.
- 实施通用门组通常需要复杂的错误纠正或高开头技术,如魔法状态.
研究的目的:
- 在一个被困离子量子计算机上实现一个量子比特加法算法的容错性.
- 探索X颜色代码对于高效的容错量子计算的有效性.
主要方法:
- 利用X颜色代码实现一个量子比特加值的容错实现.
- 通过消除冗余的错误校正和采用低开销准备和测量技术来优化电路.
- 将易出错的两量子比特门和测量的数量减少到36个.
主要成果:
- 实现了大约1.1 × 10^-3.的容错算术错误率.
- 在未编码电路中观察到一个明显更高的误差率,大约为9.5 × 10^-3.
- 在近期量子硬件上展示了耐故障操作的实际可行性.
结论:
- X颜色代码为容错量子计算提供了一种可行和高效的方法.
- 优化电路设计和低开销技术对于降低量子算法错误率至关重要.
- 这项工作代表了实现能够进行复杂计算的容错量子计算机的重要一步.
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