论文标题

频域中量子通信的高维纠缠

High-Dimensional Entanglement for Quantum Communication in the Frequency Domain

论文作者

Ponce, Meritxell Cabrejo, Muniz, André Luiz Marques, Huber, Marcus, Steinlechner, Fabian

论文摘要

高维光子纠缠是具有提高容量的受错误保护量子信息处理的有前途的候选人。在光子的载体频率中编码高维Qudits,结合了发电的易用性,通用单光子门以及与光纤传输的兼容性,以实现高容量量子通信。最近的里程碑实验令人印象深刻地证明了几种频率模式​​的量子干扰,但是大规模频率纠缠的认证仍然是一个开放的挑战。这项研究表明了如何利用标准连续波自发参数下调过程中固有的大频率输入。它进一步报告了离散频率纠缠的记录认证,并结合了一种新颖的认证方法,既高效又可实施。该技术需要很少的测量,并且不需要对国家的假设。这项工作为在量子通信和一般量子信息科学中利用这种编码提供了可能性。

High-dimensional photonic entanglement is a promising candidate for error-protected quantum information processing with improved capacity. Encoding high-dimensional qudits in the carrier frequency of photons combines ease of generation, universal single-photon gates, and compatibility with fiber transmission for high-capacity quantum communication. Recent landmark experiments have impressively demonstrated quantum interference of a few frequency modes, yet the certification of massive-dimensional frequency entanglement has remained an open challenge. This study shows how to harness the large frequency-entanglement inherent in standard continuous-wave spontaneous parametric down-conversion processes. It further reports a record certification of discretized frequency entanglement, combined with a novel approach for certification that is both highly efficient and nonlocally implementable. This technique requires very few measurements and does not require assumptions on the state. The work opens the possibility for utilizing this encoding in quantum communications and in quantum information science in general.

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