实时量子反准备和稳定光子数状态.
Clément Sayrin1, Igor Dotsenko, Xingxing Zhou
1Laboratoire Kastler Brossel, ENS, UPMC-Paris 6, CNRS, 24 rue Lhomond, 75005 Paris, France.
Nature
|September 3, 2011
概括
这项研究展示了实时量子反来稳定超导空腔中的微波场,准备光子数状态并逆转脱凝. 这促进了复杂的量子信息操作的量子控制.
科学领域:
- 量子物理学的量子物理学
- 量子控制是一种量子控制.
- 超导电路中的超导电路.
背景情况:
- 经典的反循环通过将传感器输出与设置点进行比较来稳定系统.
- 量子反面临着挑战,因为测量对量子状态的反反应.
- 弱度测量提供了信息获取和系统干扰之间的妥协.
研究的目的:
- 为了实现微波场的实时稳定量子反循环.
- 在需求时准备光子数状态 (Fock状态).
- 为了抵消量子振荡器中的脱相连效应.
主要方法:
- 使用实时计算机控制的反系统.
- 使用原子束传感器使用弱量子非破坏测量.
- 实现了注入经典场的执行器来调整微波场状态.
主要成果:
- 成功准备了超导空腔中的微波场的光子数状态.
- 证明了由脱凝结引起的量子跳跃的逆转.
- 展示了主动控制能够产生非经典状态并对抗脱节的能力.
结论:
- 该实验代表了实施复杂量子信息操作的重要一步.
- 实时量子反可以积极稳定量子系统,防止脱凝.
- 这项工作为先进的量子内存和量子总线应用铺平了道路.
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