在远程超导量子处理器之间实现高保真性完美纠
Juan Song1,2,3, Shuang Yang1, Pei Liu1,4
1Beijing Academy of Quantum Information Sciences, Beijing Key Laboratory of Fault-Tolerant Quantum Computing, Beijing 100193, China.
Physical review letters
|August 18, 2025
概括
研究人员在远程超导量子比特之间实现了高保真度纠门,这是可扩展量子计算的关键步骤. 这一突破克服了分布式量子信息处理系统的局限性.
科学领域:
- 量子计算是一种量子计算.
- 超导量子比特是超导量子比特.
- 量子信息处理 量子信息处理
背景情况:
- 超导量子比特是量子计算的领先候选人,但面临着可扩展性的挑战.
- 分布式量子计算为更大的系统提供了一条道路.
- 远程量子比特之间的直接通用量子门是必不可少的,但尚未实现.
研究的目的:
- 为了展示远程超导量子处理器之间的直接高保真纠门.
- 为了克服当前分布式量子计算架构的局限性.
主要方法:
- 在连接同轴电缆中利用静态波模式连接两个超导量子处理器.
- 将处理器分开30厘米的距离.
- 采用交叉基准测试来评估门的真实性.
主要成果:
- 实现了高保真度的无控制 (CNOT) 门,保真度为 (99.15±0.02) %.
- 实现了高保真性控制-z (CZ) 门,保真度为 (98.03±0.04) %.
- 与状态传输和基于反的协议相比,证明了更高的可靠性和效率.
结论:
- 这项工作在实现通用分布式量子信息处理方面取得了重大进展.
- 展示的直接纠门对于未来大型量子系统的开发至关重要.
- 克服了用于实际量子计算的超导量子比特系统扩展的关键挑战.
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