在噪音道中使用两量子比特探针进行多参数估计.
Lorcán O Conlon1,2, Ping Koy Lam1,2, Syed M Assad1,2
1Centre for Quantum Computation and Communication Technology, Department of Quantum Science, Australian National University, Canberra, ACT 2601, Australia.
Entropy (Basel, Switzerland)
|August 26, 2023
概括
这项研究比较了在噪声下进行量子相位估计的单量子比特和双量子比特探头. 两量子比特探测器通常提供更好的精度,但单量子比特探测器在非常杂的条件下可以超过纠探测器.
科学领域:
- 量子信息科学 量子信息科学
- 量子计量学 量子计量学
- 量子传感器是一种量子传感器.
背景情况:
- 量子系统容易受到噪声的影响,这会降低参数估计的性能.
- 了解噪声对量子探测器的影响对于开发强大的量子技术至关重要.
- 同时估计多个参数在量子计量学中存在独特的挑战.
研究的目的:
- 为了比较单位和双量子比特探头的性能,以同时估计相位旋转.
- 在各种杂的量子通道下确定估计的量子极限.
- 为了确定最佳的探头状态和测量策略,以增强量子传感.
主要方法:
- 对量子极限的霍莱沃和纳加奥卡-哈雅希-克拉梅尔-拉奥极限的评估.
- 在脱凝,振幅减缓和相位减缓通道下分析探头性能.
- 确定最佳的单量子位和双量子位探测器和测量策略.
主要成果:
- 两量子比特探测器在噪音环境中通常比单量子比特探测器优于参数估计.
- 单量子比特探测器可以在高度杂的通道中实现比纠的两量子比特探测器更好的精度.
- 霍莱沃边界被调查用于多个探测器副本的集体测量.
结论:
- 纠对于在量子力学中实现最终精度极限至关重要,无论是在状态准备还是测量方面.
- 探测器的选择 (单比特或双比特) 和测量策略在噪音下显著影响估计精度.
- 这项工作为优化量子传感协议在现实噪声的情况下提供了洞察力.
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