在容错之前,量子计算的实用性的证据
Youngseok Kim1, Andrew Eddins2, Sajant Anand3
1IBM Quantum, IBM Thomas J. Watson Research Center, Yorktown Heights, NY, USA. youngseok.kim1@ibm.com.
Nature
|June 14, 2023
概括
这项研究表明杂的量子计算机可以准确地测量超出经典限制的值. 这表明量子计算的实用性甚至在可容错系统之前.
科学领域:
- 量子计算
- 超导处理器
- 噪声的特征
背景情况:
- 量子计算提供了显著的加速, 但受到噪音的阻碍.
- 容错的量子电路是理想的解决方案,
- 现在的量子处理器在一个杂的,不容错误的时代运行.
研究的目的:
- 为了证明当前杂的量子处理器的实用性.
- 在超越经典计算的尺度上测量准确的预期值.
- 提供近期量子应用的证据.
主要方法:
- 在127位超导处理器上的实验.
- 噪声的特征和操纵.
- 与精确可验证的电路和经典张量网络方法 (MPS,isoTNS) 的比较.
主要成果:
- 测量了超出经典粗力计算的电路体积的准确预期值.
- 量子计算机的结果在强烈纠的系统中是正确的, 而经典方法则失败了.
- 在容错时代证明了量子计算的实用性.
结论:
- 连贯性,校准和噪声控制方面的进步使得大规模的量子实验成为可能.
- 杂的量子处理器可以提供超越经典近似的有价值的结果.
- 这项工作为近期量子应用奠定了基础.
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