在地下设施的超导量子位中测量相关电荷噪声
Nature communications
|November 11, 2025
概括
控制的电离辐射揭示了超导量子比特中的电荷跳跃. 地下运行与屏蔽显著降低了充电跳跃率,使量子比特长时间运行与最小的干扰.
科学领域:
- 量子计算是一种量子计算.
- 超导量子比特是一种超导量子比特.
- 辐射物理学 辐射物理学
背景情况:
- 超导量子比特对其充电环境非常敏感.
- 电离辐射可以诱导电荷波动,影响量子比特的性能.
- 现有的设施缺乏用于量子比特研究的可控辐射环境.
研究的目的:
- 为了研究受控电离辐射对超导量子比特的影响.
- 测量在低背景地下设施中的电荷跳跃.
- 建立研究量子比特充电环境的方法.
主要方法:
- 在地下深处的低辐射冷设施中使用了四个量子比特设备.
- 雇员使用电荷断层扫描来测量长时间序列上的电荷跳跃.
- 使用屏蔽控制了电离辐射流量,并用单独的探测器对其进行了表征.
主要成果:
- 观测到与空间和时间相关的电荷跳跃,与电离辐射相互作用相对应.
- 在带屏蔽的情况下达到0.19毫赫兹的最低充电跳跃率,明显低于表面测试.
- 经过22个小时的运行证明,零相关电荷在毫米尺度上跳跃.
结论:
- 控制的电离辐射是研究超导量子比特充电环境的可行工具.
- 地下设施和屏蔽有效地减少了破坏性的充电跳跃.
- 需要进一步的研究来解释观察到的跳跃率超过预期仅基于环境玛.
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