在强烈驱动的超导量子位中进行马赫-泽恩德干扰测量
William D Oliver1, Yang Yu, Janice C Lee
1MIT Lincoln Laboratory, 244 Wood Street, Lexington, MA 02420, USA. oliver@ll.mit.edu
概括
我们将使用超导流量量子位演示马赫-泽恩德类型的干扰度. 这种量子干扰方法允许在强烈驱动的状态下对量子位进行操纵和表征.
科学领域:
- 量子计算是一种量子计算.
- 超导电路中的超导电路
- 量子光学是一种量子光学.
背景情况:
- 超导流量量子比特是可调节的人造原子,具有不同的基本和激发状态.
- 这些状态表现出避免交叉,这是量子操纵的关键特征.
- 量子比特的强波驱动使其每周期两次穿过这个避免的交叉点.
研究的目的:
- 为了在超导流量量子位中演示马赫-泽恩德类型的干扰度.
- 探索由兰道-泽纳过渡产生的量子干扰边缘.
- 提供一种替代方法来操纵和表征在强烈驱动的政权中的量子比特.
主要方法:
- 使用超导流量量子位的马赫-泽恩德式干扰测量.
- 使用强的波激发来驱动量子比特通过其避免的交叉路口.
- 利用兰道-泽纳过渡作为相积的连贯光束分割器.
主要成果:
- 观测到的量子干扰边缘用于涉及1到20个光子的过渡.
- 证明累积相随微波振幅变化而变化.
- 在量子位相空间中展示了光学马赫-泽恩德干扰度的概括.
结论:
- 在超导流量量子位中,马赫-泽恩德类型的干涉度是可行的.
- 这种技术为量子比特操纵和表征提供了一种新的方法.
- 这项研究突出了强烈驱动模式中的量子比特动态的量子光学性质.
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