Phase-sensitive nonclassical properties in quantum metrology with a displaced squeezed vacuum state
Abstract
We predict that the phase-dependent error distribution of locally unentangled quantum states directly affects quantum parameter estimation accuracy. Therefore, we employ the displaced squeezed vacuum (DSV) state as a probe state and investigate an interesting question of the phase-sensitive nonclassical properties in DSV's metrology. We found that the accuracy limit of parameter estimation is a function of the phase-sensitive parameter with a period . We show that when , we can obtain the accuracy of parameter estimation approaching the ultimate quantum limit through using the DSV state with the larger displacement and squeezing strength, whereas , the optimal estimation accuracy can be acquired only when the DSV state degenerates to a squeezed-vacuum state.
Cite
@article{arxiv.2105.00970,
title = {Phase-sensitive nonclassical properties in quantum metrology with a displaced squeezed vacuum state},
author = {Zhiwei Tao and Yichong Ren and Azezigul Abdukirim and Shiwei Liu and Ruizhong Rao},
journal= {arXiv preprint arXiv:2105.00970},
year = {2021}
}
Comments
7 pages, 5 figures