相关实验视频
Updated: Jun 9, 2025

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Generation and Coherent Control of Pulsed Quantum Frequency Combs
Published on: June 8, 2018
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四个单元三元量子比特的通用控制
Xin Zhang1,2, Elizaveta Morozova1,2, Maximilian Rimbach-Russ1,2
1QuTech, Delft University of Technology, Delft, Netherlands.
Nature nanotechnology
|November 1, 2024
概括
研究人员证明了精确控制量子点中相互作用的旋转,为可扩展的量子计算铺平了道路. 这项工作显示了单元三元量子比特在先进量子信息处理中的潜力.
科学领域:
- 量子计算是一种量子计算.
- 量子信息处理 量子信息处理
- 半导体螺旋电子学 半导体螺旋电子学
背景情况:
- 半导体量子点中相互作用的自旋的连贯控制对于量子信息处理和量子磁性至关重要.
- 开发可扩展的量子计算平台需要对单个量子系统进行精确的控制.
研究的目的:
- 为了证明2x4量子点数组中最近邻近旋转之间的完全和可控制的相互作用.
- 展示单元三元量子比特在量子计算应用中的潜力.
主要方法:
- 一个2x4量子点阵列的制造.
- 四个单元三元量子比特的定义和操作.
- 在邻近量子位之间实现双轴单量子位门和SWAP式双量子位门.
- 一个用于纠生成和分布的电路的实验执行.
主要成果:
- 实现了高平均单量子比特门忠实度 (99.49(8) -99.84(1)%) 和钟状态忠实度 (73(1) -90(1)%).
- 成功生成和分配纠,实现一个远程的钟声状态,具有75%的忠实度和22%的一致性.
- 证明了扩展量子点旋转控制在扩展的二线性数组中的可行性.
结论:
- 量子点中的单元三元量子比特代表了量子计算的一个有前途的平台.
- 扩展数组中量子点旋转的可扩展控制是可以实现的,这推动了量子技术的发展.
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