微波食品加热
无线电频率
带宽(计算)
计算机数据存储
信号(编程语言)
材料科学
光存储
光纤
计算机科学
电子工程
高保真
放大器
光电子学
光放大器
多模光纤
调制(音乐)
信号处理
光衰减器
光载波传输速率
电气工程
信号发生器
频率调制
访问时间
基带
数字下变频器
响应时间
宽带
作者
Guangying Wang,Chao Song,Yuan Qian,Guibin Zhang,Junyi Zhang,Yiran Guan,Yuan Cao,Jiejun Zhang,Jianping Yao
摘要
An optical RF memory (ORFM) based on a fiber acousto-optic frequency shifting loop (AO-FSL) for microwave signal storage with, to our knowledge, a record-long storage time of 13 ms is proposed and experimentally demonstrated. The key to achieving a long storage time is the use of a distributed Raman fiber amplifier (DRFA) that can compensate for the loop loss while maintaining an ultra-low noise figure (NF). An acousto-optic frequency shifter is employed in the loop to avoid lasing. To test the ORFM, a microsecond-long microwave signal is amplitude-modulated on an optical carrier and injected into the AO-FSL. Experimental results show that the ORFM enables the storage of microwave signals, including single-tone and linearly frequency modulated (LFM) microwave signals, with signal durations up to 10 μs and a record-long storage time of 13 ms. This corresponds to more than 300 circulations in the AO-FSL, representing the highest number ever reported to date. Compared with a digital RF memory, our proposed ORFM eliminates the need for the high-speed analog-to-digital converter (ADC) and digital-to-analog converter (DAC), offering a wide operational bandwidth and simplified system architecture. These advantages make it particularly well-suited for electronic warfare applications where an ORFM having a long storage time and a high signal fidelity is needed.
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