论文标题
优化对高维纠缠的检测
Optimized detection of high-dimensional entanglement
论文作者
论文摘要
纠缠检测是量子信息处理中最常规的任务之一。尽管大多数高维纠缠的实验证明都取决于基于忠诚的证人,但这些证明是无能为力的,无法在大量的纠缠量子状态(即所谓的不忠实国家)中检测纠缠。在本文中,我们引入了一种高度灵活的自动化方法,以构建最佳测试,以构建纠缠检测的最佳测试,鉴于两分的目标状态是任意维度,忠实或不忠实的目标状态,并且是一组本地测量运算符。通过限制所考虑的测量设置的数量或复杂性,我们的方法输出了最方便的协议,可以使用广泛的实验技术(例如光子,超导量,冷原子或捕获离子)实现。通过可以准备和测量任意高维混合状态的实验量子光学设置,我们实施了约3美元的$ 3 $设定协议。这些协议使我们能够在4维光子状态下实验证明2个和3个非信仰的纠缠,其中一些符合噪声的50%。
Entanglement detection is one of the most conventional tasks in quantum information processing. While most experimental demonstrations of high-dimensional entanglement rely on fidelity-based witnesses, these are powerless to detect entanglement within a large class of entangled quantum states, the so-called unfaithful states. In this paper, we introduce a highly flexible automated method to construct optimal tests for entanglement detection given a bipartite target state of arbitrary dimension, faithful or unfaithful, and a set of local measurement operators. By restricting the number or complexity of the considered measurement settings, our method outputs the most convenient protocol which can be implemented using a wide range of experimental techniques such as photons, superconducting qudits, cold atoms or trapped ions. With an experimental quantum optics setup that can prepare and measure arbitrary high-dimensional mixed states, we implement some $3$-setting protocols generated by our method. These protocols allow us to experimentally certify 2- and 3-unfaithful entanglement in 4-dimensional photonic states, some of which contain well above 50% of noise.