论文标题

高维像素纠缠:有效的生成和认证

High-Dimensional Pixel Entanglement: Efficient Generation and Certification

论文作者

Valencia, Natalia Herrera, Srivastav, Vatshal, Pivoluska, Matej, Huber, Marcus, Friis, Nicolai, McCutcheon, Will, Malik, Mehul

论文摘要

光子具有在光谱,空间和极化自由度中携带大量信息的潜力。尽管最新的古典通信系统通常旨在通过波长和空间模式除色多路复用,但基于多模式纠缠的量子系统通常会遭受低状态质量,较长的测量时间和有限的编码容量的影响。同时,纠缠认证方法通常依赖于损害安全性的假设。在这里,我们在横向位置摩托车中的光子高维纠缠的认证,具有创纪录的质量,测量速度和纠缠维度,而无需对状态或渠道做出任何假设。使用量身定制的宏像素基础,精确的空间模式测量和修改后的纠缠见证人,我们在19维状态空间中表现出高达94.4%的状态保真度,最多55个局部尺寸的纠缠以及最多4 emits的纠缠范围。此外,我们的测量时间表明,比以前的最新示威相比,超过两个数量级的改善。我们的结果为噪声量子网络铺平了道路,该网络使单个光子的信息携带能力饱和。

Photons offer the potential to carry large amounts of information in their spectral, spatial, and polarisation degrees of freedom. While state-of-the-art classical communication systems routinely aim to maximize this information-carrying capacity via wavelength and spatial-mode division multiplexing, quantum systems based on multi-mode entanglement usually suffer from low state quality, long measurement times, and limited encoding capacity. At the same time, entanglement certification methods often rely on assumptions that compromise security. Here we show the certification of photonic high-dimensional entanglement in the transverse position-momentum degree-of-freedom with a record quality, measurement speed, and entanglement dimensionality, without making any assumptions about the state or channels. Using a tailored macro-pixel basis, precise spatial-mode measurements, and a modified entanglement witness, we demonstrate state fidelities of up to 94.4% in a 19-dimensional state-space, entanglement in up to 55 local dimensions, and an entanglement-of-formation of up to 4 ebits. Furthermore, our measurement times show an improvement of more than two orders of magnitude over previous state-of-the-art demonstrations. Our results pave the way for noise-robust quantum networks that saturate the information-carrying capacity of single photons.

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