论文标题

路径偏振度探测状态的噪声弹性

Noise resilience in path-polarization hyperentangled probe states

论文作者

Sairam, Akshay Kannan, Chandrashekar, C. M.

论文摘要

大多数用于产生纠缠和实用应用的量子系统并非与环境隔离,因此容易受到噪声的影响。已知两个系统之间的纠缠在两个系统之间的自由度,具有某些优势,包括针对噪音的稳健性,而不是传统的纠缠状态。量子照明,成像和通信方案涉及从一对纠缠光子发送一个光子并保留另一个光子的光子通常仅涉及仅将信号光子暴露于环境噪声中。噪声降解纠缠和其他相关性的破坏性对于许多这些应用至关重要。在本文中,我们研究了在嘈杂的相互作用中使用光子对使用光子对的优点,在嘈杂的相互作用中,其中只有一条路径中的光子受噪声影响。我们对这种噪声进行建模,并研究噪声对超置光子中存在的相关性的影响。使用三种不同的方法,即纠缠消极情绪,纠缠证人和贝尔非局部性,以表明途径超置型探针对噪声的弹性。

Most quantum systems that are used for generating entanglement and for practical applications are not isolated from the environment, and are hence susceptible to noise. Entanglement in more than one degree of freedom between two systems, known as hyperentanglement, is known to have certain advantages, including robustness against noise over conventional entangled states. Quantum illumination, imaging and communication schemes that involve sending one photon from a pair of entangled photons and retaining the other photon usually involve exposing only the signal photon to environmental noise. The disruptive nature of noise degrades entanglement and other correlations which are crucial for many of these applications. In this paper, we study the advantages of using photon pairs in certain path-polarization hyperentangled states in a noisy interaction where photons in only one of the paths are affected by noise. We model such noise and study the effect of noise on the correlations present in the hyperentangled photons. Three different methods, entanglement negativity, entanglement witnesses and Bell nonlocality are used to show the resilience of path-polarization hyperentangled probe state against noise.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源