论文标题

超过微波光子光子频率褪色效果的经典极限

Surpassing the classical limit of microwave photonic frequency fading effect by quantum microwave photonics

论文作者

Jin, Yaqing, Yang, Ye, Hong, Huibo, Xiang, Xiao, Quan, Runai, Liu, Tao, Zhu, Ninghua, Li, Ming, Dong, Ruifang, Zhang, Shougang

论文摘要

对于高速射频(RF)信号恢复的能源时时间纠缠的两光源作为光载体和时间相关的单光子检测,量子微波光子学(QMWP)的方法表明,非局部性RF信号编码和有效的RF信号脉冲脉冲的非局部性RF信号信号的潜在的潜在。在这封信中,进一步证明了其在微波信号处理和预期优势中的能力。 QMWP RF相位转移和横向滤波功能都是微波信号处理的基本构建块。除了对经典微波光子学中与宽带载体相关的分散诱导的频率褪色效果的完美免疫力外,还提供了天然的二维平行微波信号处理器。这些演示充分证明了QMWP优于经典MWP,并为涉及加密处理的MWP新应用领域打开了大门。

With energy-time entangled biphoton sources as the optical carrier and time-correlated single-photon detection for high-speed radio frequency (RF) signal recovery, the method of quantum microwave photonics (QMWP) has presented the unprecedented potential of nonlocal RF signal encoding and efficient RF signal distilling from the dispersion interference associated with ultrashort pulse carriers. In this letter, its capability in microwave signal processing and prospective superiority is further demonstrated. Both the QMWP RF phase shifting and transversal filtering functionality, which are the fundamental building blocks of microwave signal processing, are realized. Besides the perfect immunity to the dispersion-induced frequency fading effect associated with the broadband carrier in classical microwave photonics, a native two-dimensional parallel microwave signal processor is provided. These demonstrations fully prove the superiority of QMWP over classical MWP and open the door to new application fields of MWP involving encrypted processing.

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