论文标题

量子相干性的优势在被选择的计量学中

Advantage of quantum coherence in postselected metrology

论文作者

Xiong, Shao-Jie, Wei, Peng-Fei, Wang, Huang-Qiu-Chen, Shao, Lei, Sun, Yong-Nan, Liu, Jing, Sun, Zhe, Wang, Xiao-Guang

论文摘要

在常规测量中,要达到参数估计的最高准确性,必须测量所有样品,因为每个独立样本都包含相同的量子渔民信息。在选择后的计量学中,选择后可以将初始样品的量子渔民集中在一个小的后选择的子集结中。已经证明,在任何经典通勤理论中都无法实现这种量子优势。在这项工作中,我们表明,在没有量子相干性的情况下,无法实现选择后的优势(WVA)。初始系统的量子相干性与参数估计中的准备成本和测量成本密切相关。随着初始量子相干性的提高,准备成本和测量成本的联合价值可以优化为较小的。此外,我们得出了制备,测量和量子相干性之间的分析权衡关系。我们在线性光学设置中进一步测试了权衡关系。实验和理论结果非常同意,并表明量子相干性在界定后选择计量过程中的资源成本方面起着关键作用。

In conventional measurement, to reach the greatest accuracy of parameter estimation, all samples must be measured since each independent sample contains the same quantum Fisher information. In postselected metrology, postselection can concentrate the quantum Fisher information of the initial samples into a tiny post-selected sub-ensemble. It has been proven that this quantum advantage can not be realized in any classically commuting theory. In this work, we present that the advantage of postselection in weak value amplification (WVA) can not be achieved without quantum coherence. The quantum coherence of the initial system is closely related to the preparation costs and measurement costs in parameter estimation. With the increase of initial quantum coherence, the joint values of preparation costs and measurement costs can be optimized to smaller. Moreover, we derive an analytical tradeoff relation between the preparation, measurement and the quantum coherence. We further experimentally test the tradeoff relation in a linear optical setup. The experimental and theoretical results are in good agreement and show that the quantum coherence plays a key role in bounding the resource costs in the postselected metrology process.

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