论文标题
通过参数估计探测宇宙字符串时空
Probing cosmic string spacetime through parameter estimation
论文作者
论文摘要
量子计量学通过使用量子策略研究物理量的最终精度极限。在本文中,我们将量子计量技术应用于相对论框架,以估计宇宙弦弦时期的赤字角度参数。我们使用耦合到电磁场的两级原子作为探针,并通过将其视为开放量子系统来得出其动力学演化。我们通过计算其量子Fisher信息(QFI)来估计赤字角参数。发现量子渔民信息取决于赤字角度,进化时间,检测器初始状态,极化方向及其位置。然后,我们确定最佳的估计策略,即,通过所有相关参数最大化量子渔民信息,因此优化了估计的精度。我们的结果表明,对于不同的极化情况,QFI具有不同的行为和不同的数量级,这可能会揭示宇宙弦弦时期的探索。
Quantum metrology studies the ultimate precision limit of physical quantities by using quantum strategy. In this paper we apply the quantum metrology technologies to the relativistic framework for estimating the deficit angle parameter of cosmic string spacetime. We use a two-level atom coupled to electromagnetic fields as the probe and derive its dynamical evolution by treating it as an open quantum system. We estimate the deficit angle parameter by calculating its quantum Fisher information(QFI). It is found that the quantum Fisher information depends on the deficit angle, evolution time, detector initial state, polarization direction, and its position. We then identify the optimal estimation strategies, i.e., maximize the quantum Fisher information via all the associated parameters, and therefore optimize the precision of estimation. Our results show that for different polarization cases the QFIs have different behaviors and different orders of magnitude, which may shed light on the exploration of cosmic string spacetime.