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在一对超导量子位上演示受控NOT量子门
J H Plantenberg1, P C de Groot, C J P M Harmans
1Kavli Institute of NanoScience, Delft University of Technology, PO Box 5046, 2600 GA, Delft, The Netherlands. j.h.plantenberg@tudelft.nl
Nature
|June 15, 2007
概括
研究人员使用超导流量量子比特展示了四个受控NOT (CNOT) 量子逻辑门. 这一进步为可扩展的量子计算算法提供了多功能构建块.
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.
背景情况:
- 量子计算依赖于量子逻辑门,用于量子比特 (qubits) 之间的条件运算.
- 超导量子比特为开发可扩展的量子计算架构提供了一个有希望的途径.
研究的目的:
- 为了证明所有四个控制式NOT (CNOT) 量子逻辑门的选择性执行.
- 为了在量子算法中使用这些门的特征.
主要方法:
- 利用微波脉冲应用于单一对合流量量子位.
- 采用两个独立的单射式SQUID探测器进行输出状态测量,包括量子比特-量子比特相关性.
- 通过状态转移振幅测量和Ramsey-like干扰实验来确定量子相位移获取的门真实表.
主要成果:
- 成功演示了四个CNOT量子逻辑门的完整集的选择性执行.
- 展示了使用所有两量子比特计算基础状态和叠加作为输入的能力.
- 由量子比特对称性引起的特征性门行为,允许量子比特作为控制或目标,以0或1状态为条件.
结论:
- 展示的CNOT门具有足够的特征,可以集成到量子算法中.
- 这些门形成了一组高效和多功能的构建块,用于推进量子计算.
- 这项工作有助于开发使用超导量子比特可扩展的量子计算.
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