论文标题

通过相空间不平等的非年龄认证实验认证

Experimental certification of nonclassicality via phase-space inequalities

论文作者

Biagi, Nicola, Bohmann, Martin, Agudelo, Elizabeth, Bellini, Marco, Zavatta, Alessandro

论文摘要

尽管它在量子科学技术和技术方面具有根本重要性,但非经典性的实验认证仍然是一项具有挑战性的任务,尤其是在现实的情况下,损失和噪音浸入了系统。在这里,我们介绍了最近引入的非经典性认证的相位空间不等式的实验实现,从概念上讲,该实现在概念上将相关条件与相关条件结合在一起。我们通过研究一个嘈杂和有损量子的量子状态的非经典性来证明这种方法的实用性和敏感性。为此,我们通过实验生成具有各种热平均光子数量的单光子添加的热状态,并在不同的损耗水平下检测它们。基于重建的Wigner和Husimi Q功能,尽管所涉及的分布是非负的,但不平等条件仍检测到非经典性,其中包括高损失(93%)的情况(93%)和其他已建立的方法没有揭示非经典性的情况。我们展示了实施方法的优势,并讨论了可能确保对量子科学和技术的广泛适用性的可能扩展。

In spite of its fundamental importance in quantum science and technology, the experimental certification of nonclassicality is still a challenging task, especially in realistic scenarios where losses and noise imbue the system. Here, we present the first experimental implementation of the recently introduced phase-space inequalities for nonclassicality certification, which conceptually unite phase-space representations with correlation conditions. We demonstrate the practicality and sensitivity of this approach by studying nonclassicality of a family of noisy and lossy quantum states of light. To this end, we experimentally generate single-photon-added thermal states with various thermal mean photon numbers and detect them at different loss levels. Based on the reconstructed Wigner and Husimi Q functions, the inequality conditions detect nonclassicality despite the fact that the involved distributions are nonnegative, which includes cases of high losses (93%) and cases where other established methods do not reveal nonclassicality. We show the advantages of the implemented approach and discuss possible extensions that assure a wide applicability for quantum science and technologies.

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