Criticality-enhanced quantum sensing in ferromagnetic Bose-Einstein condensates: Role of readout measurement and detection noise

Safoura S. Mirkhalaf, D. Benedicto Orenes, M. Mitchell, E. Witkowska
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引用次数: 12

Abstract

We theoretically investigate estimation of the control parameter in a ferromagnetic Bose-Einstein condensate near second order quantum phase transitions. We quantify sensitivity by quantum and classical Fisher information and using the error-propagation formula. For these different metrics, we find the same, beyond-standard-quantum-limit (SQL) scaling with atom number near critical points, and SQL scaling away from critical points. We find that both depletion of the $m_f=0$ Zeeman sub-level and transverse magnetization provide signals of sufficient quality to saturate the sensitivity scaling. To explore the effect of experimental imperfections, we study the scaling around criticality at nonzero temperature and with nonzero detection noise. Our results suggest the feasibility of sub-SQL sensing in ferromagnetic condensates with current experimental capabilities.
铁磁玻色-爱因斯坦凝聚体中的临界增强量子传感:读出测量和检测噪声的作用
我们从理论上研究了二阶量子相变附近铁磁玻色-爱因斯坦凝聚体控制参数的估计。我们利用量子和经典费雪信息以及误差传播公式来量化灵敏度。对于这些不同的度量,我们发现了相同的、超越标准量子极限(SQL)的扩展与原子数在临界点附近的扩展,以及SQL在远离临界点的扩展。我们发现$m_f=0$ Zeeman子电平的损耗和横向磁化都提供了足够质量的信号来饱和灵敏度标度。为了探索实验缺陷的影响,我们研究了在非零温度和非零检测噪声下临界周围的尺度。我们的研究结果表明,在现有的实验条件下,在铁磁凝析油中进行子sql传感是可行的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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