论文标题

统一的高斯过程的光学估计,而没有相位参考使用Fock状态

Optical estimation of unitary Gaussian processes without phase reference using Fock states

论文作者

Oh, Changhun, Park, Kimin, Filip, Radim, Jeong, Hyunseok, Marek, Petr

论文摘要

由于一般的高斯过程是相敏感的,因此需要稳定的相位参考才能利用此功能。当缺少参考时,由于样品的挥发性或测量的技术局限性,因此所得过程在相位中显示为随机性。在这种情况下,我们考虑了两个单模高斯过程,位移和挤压。我们表明,可以使用光子数状态和光子数分辨率检测器进行有效估计这两个。为了单独估计位移和挤压,数百个探针的实践估计误差甚至可以使cramér-rao饱和,即使是针对估计参数的任意小值和在现实损失下的任意小值。使用具有等效能量和最佳测量的高斯状态,使用Fock状态的位移估计始终优于估计。为了估算挤压,Fock指出的表现要优于高斯方法,但只有当它们的能量足够大时。最后,我们表明,也可以使用Fock状态同时估计位移和挤压。

Since a general Gaussian process is phase-sensitive, a stable phase reference is required to take advantage of this feature. When the reference is missing, either due to the volatile nature of the measured sample or the measurement's technical limitations, the resulting process appears as random in phase. Under this condition, we consider two single-mode Gaussian processes, displacement and squeezing. We show that these two can be efficiently estimated using photon number states and photon number resolving detectors. For separate estimation of displacement and squeezing, the practical estimation errors for hundreds of probes' ensembles can saturate the Cramér-Rao bound even for arbitrary small values of the estimated parameters and under realistic losses. The estimation of displacement with Fock states always outperforms estimation using Gaussian states with equivalent energy and optimal measurement. For estimation of squeezing, Fock states outperform Gaussian methods, but only when their energy is large enough. Finally, we show that Fock states can also be used to estimate the displacement and the squeezing simultaneously.

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