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在交换合的捐赠电子自旋量子比特中纠的两量子比特逻辑操作的断层扫描
Holly G Stemp1,2, Serwan Asaad1,2,3, Mark R van Blankenstein1,2
1School of Electrical Engineering and Telecommunications, UNSW Sydney, Sydney, NSW, 2052, Australia.
Nature communications
|September 28, 2024
概括
研究人员展示了中捐赠电子旋转的高保真量子逻辑门. 这一突破使纠成为扩展量子计算机的关键.
科学领域:
- 量子计算是一种量子计算.
- 固态物理 固态物理
- 半导体自旋电子学 半导体自旋电子
背景情况:
- 可扩展的量子处理器需要高保真度的量子逻辑操作.
- 中的捐赠体提供了原子规模和良好的连贯性,但缺乏被证明的纠.
- 之前的研究没有显示出与供体结合的电子旋转之间的纠.
研究的目的:
- 实验性地证明了中供体结合电子旋转的通用1和2量子比特门.
- 量化这些量子运算的忠实性.
- 使用展示的门组来创建纠的状态.
主要方法:
- 利用一个由两个弱交换合电子结合到中的单捐赠体的系统.
- 通过离子植入引入捐助者,利用半导体处理兼容性.
- 采用门式断层扫描 (GST) 来量化量子操作的真实性.
主要成果:
- 成功演示了通用的1和2量子比特门,交换互动对量子比特连贯性没有不利影响.
- 使用 GST 的量化门户忠实度.
- 创建了电子自旋的纠的钟状态,其忠度为91.3 ± 3.0%和0.87 ± 0.05的一致性.
结论:
- 高保真性门和纠的实验演示是基于捐赠者的量子计算的关键步骤.
- 这些结果为扩大使用捐赠器的量子处理器提供了必要的基础.
- 观察到的量子比特连贯性对交换相互作用的稳定性对设备稳定性来说是有希望的.
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