论文标题
用于模式编码参数的高斯量子计量
Gaussian quantum metrology for mode-encoded parameters
论文作者
论文摘要
量子光学计量学旨在确定估计编码到电磁场量子状态的参数的最终灵敏度界限。在许多实际应用中,包括成像,显微镜和遥感,感兴趣的参数不仅在田间的量子状态中编码,而且在其时空分布中,即在其模式结构中进行编码。在此模式编码的参数估计设置中,我们得出了有效的量子渔民信息的分析表达式。为了说明方法的力量,我们将结果应用于梁的横向位移以及两个脉冲之间的时间分离。对于这些示例,我们展示了如何通过将挤压添加到特定模式中来增强估计灵敏度。
Quantum optical metrology aims to identify ultimate sensitivity bounds for the estimation of parameters encoded into quantum states of the electromagnetic field. In many practical applications, including imaging, microscopy, and remote sensing, the parameter of interest is not only encoded in the quantum state of the field, but also in its spatio-temporal distribution, i.e. in its mode structure. In this mode-encoded parameter estimation setting, we derive an analytical expression for the quantum Fisher information valid for arbitrary multimode Gaussian fields. To illustrate the power of our approach, we apply our results to the estimation of the transverse displacement of a beam and to the temporal separation between two pulses. For these examples, we show how the estimation sensitivity can be enhanced by adding squeezing into specific modes.