该SpinBus架构用于扩展自旋量子比特与电子穿
Matthias Künne1, Alexander Willmes1, Max Oberländer1
1JARA-FIT Institute for Quantum Information, Forschungszentrum Jülich GmbH and RWTH Aachen University, 52074, Aachen, Germany.
Nature communications
|June 11, 2024
概括
新的SpinBus架构使用电子穿用于可扩展的量子处理器. 这种设计增强了量子位的一致性和忠实性,克服了当前半导体自旋量子位系统的局限性.
科学领域:
- 量子计算是一种量子计算.
- 半导体物理 半导体物理
- 量子信息科学是一种量子信息科学.
背景情况:
- 量子处理器的扩展需要高量子位数,2D连接和高保真度.
- 目前的半导体自旋量子比特面临着布线和交叉通话的限制.
- 电子穿为改善连接性和减少交叉通话提供了一个潜在的解决方案.
研究的目的:
- 为可扩展的半导体量子处理器引入和验证SpinBus架构.
- 为了证明电子穿对于量子比特互连的可行性.
- 为了实现高保真度的操作超过99.9%.
主要方法:
- 在Si/SiGe平台上进行设备模拟.
- 模拟量子比特连接的电子穿.
- 评估量子比特的一致性和忠实度指标.
主要成果:
- 模拟证实了使用已建立的半导体技术SpinBus的可行性.
- 实现了超过99.9%的操作忠实度.
- 该架构支持至少144个量子位,并具有室温控制.
结论:
- 通过利用自旋相干电子穿,SpinBus架构解决了量子计算中的可扩展性挑战.
- 这种方法提供了增强的量子位连贯性和减少交叉通话.
- 对于未来的基于旋转的量子处理器,SpinBus提供了一个可行的基础.
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