基于空分复用射频芯片模块的超宽双波段雷德堡原子接收器

Chip Pub Date : 2024-04-02 DOI:10.1016/j.chip.2024.100089
Li-Hua Zhang , Bang Liu , Zong-Kai Liu , Zheng-Yuan Zhang , Shi-Yao Shao , Qi-Feng Wang , Yu Ma , Tian-Yu Han , Guang-Can Guo , Dong-Sheng Ding , Bao-Sen Shi
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引用次数: 0

摘要

探测宽频率范围内的微波信号具有许多优势,因为它可以同时传输大量信息,并获取更多的频谱资源。这种能力对于微波通信、遥感和雷达等应用至关重要。然而,传统的微波接收系统受到放大器和带通滤波器的限制,只能在特定频率范围内有效工作。通常,这些系统只能处理三倍频率范围内的信号,从而限制了微波通信系统的数据传输带宽。开发新型原子集成微波传感器(例如射频芯片耦合雷德贝格原子接收器)为原子级微波传感的大工作带宽提供了机会。在这里,通过空间分复用两个集成射频芯片的原子接收器模块,展示了一种超宽双频射频传感方案。该系统可同时接收频率范围超过 6 个倍频程(300 MHz 和 24 GHz)的双频微波信号。这项工作为射频芯片集成的雷德堡原子传感器在超宽范围内的多波段微波接收应用铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Ultra-wide dual-band Rydberg atomic receiver based on space division multiplexing radio-frequency chip modules

Detecting microwave signals over a wide frequency range is endowed with numerous advantages as it enables simultaneous transmission of a large amount of information and access to more spectrum resources. This capability is crucial for applications such as microwave communication, remote sensing and radar. However, conventional microwave receiving systems are limited by amplifiers and band-pass filters that can only operate efficiently in a specific frequency range. Typically, these systems can only process signals within a three-fold frequency range, which limits the data transfer bandwidth of the microwave communication systems. Developing novel atom-integrated microwave sensors, for example, radio-frequency (RF) chipcoupled Rydberg atomic receiver, provides opportunities for a large working bandwidth of microwave sensing at the atomic level. In the current work, an ultra-wide dual-band RF sensing scheme was demonstrated by space-division multiplexing two RF-chip-integrated atomic receiver modules. The system can simultaneously receive dual-band microwave signals that span a frequency range exceeding 6 octaves (300 MHz and 24 GHz). This work paves the way for multi-band microwave reception applications within an ultra-wide range by RF-chip-integrated Rydberg atomic sensor.

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CiteScore
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