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解决纳米机械振荡器的能量水平
Patricio Arrangoiz-Arriola1,2, E Alex Wollack1,2, Zhaoyou Wang1,2
1Department of Applied Physics, Stanford University, Stanford, CA, USA.
Nature
|July 26, 2019
概括
科学家使用超导量子位来检测纳米机械振荡器的量子化能量. 这种量子声学平台能够精确测量运动能量,为量子传感器铺平道路.
科学领域:
- 量子声学
- 量子电力学
- 固态量子系统
背景情况:
- 机械振荡器的量子性质通常被经典运动所掩盖.
- 测量机械系统的量子能量需要高精度的装置.
- 之前的实验证明了光子的分散性测量,
研究的目的:
- 在纳米机械振荡器中展示量子化能量水平的分辨率.
- 开发一个融合纳米机械共振器和超导量子位的混合平台.
- 通过人工原子来实现运动能量的敏感检测.
主要方法:
- 组合纳米机械压电共振器和微波超导量子位的混合芯片的制造.
- 使用共振脉冲在纳米机械共振器中激发声子.
- 探测量子比特的激发频谱, 观察声子数依赖的频率变化.
主要成果:
- 成功解决了驱动的纳米机械振荡器的量子化能量结构.
- 观察到量子比特中的声子数依赖频率变化大约是量子比特线宽的五倍.
- 展示了一个完全集成的量子声学平台,具有强大的合和高连贯性.
结论:
- 这项实验成功地证明了机械振荡器能量的敏感检测.
- 开发的混合平台为量子声学和量子传感提供了有前途的方法.
- 未来的改进可以实现量子非破坏测量和芯片规模的量子信息处理.
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