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High Q-factor Fabry-Perot Microresonator as an Alternative to Microdisk in Electro-Optical Modulator for Microwave-Photonic Receivers

机译:高Q因数Fabry-Perot微谐振器,作为微波光接收器电光调制器中微盘的替代产品

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摘要

In the last decade a new idea has been suggested for receivers of communication systems, namely, in microwave receivers' architecture. Though superheterodyne radio-frequency receivers are best suited to the needs of contemporary wireless communication, however stray radiation of their local oscillator (heterodyne) interferes with neighboring radio-devices and permits to locate the covert receiver. To overcome this drawback the signal transfer to optical range has been suggested. By this conversion, not only an elimination of receiver's stray radiation is attained but also vast advantages of photonic signal processing become available. The key element of existing microwave-photonic receivers is electro-optical microdisk modulator. However, its realization is complicated and as an alternative an electro-optical modulator based on high Q-factor Fabry-Perot microresonator is suggested. Comparative analysis of both types of modulators is performed, and advantages of high Q-factor Fabry-Perot microresonator based modulator are highlighted.
机译:在过去的十年中,已经为通信系统的接收机提出了一种新的想法,即在微波接收机的体系结构中。尽管超外差式射频接收器最适合现代无线通信的需求,但是其本机振荡器(外差式)的杂散辐射会干扰相邻的无线电设备,并允许定位隐蔽式接收器。为了克服这个缺点,已经提出了将信号传输到光学范围的建议。通过这种转换,不仅可以消除接收器的杂散辐射,而且可以获得光子信号处理的巨大优势。现有的微波光子接收器的关键元件是电光微盘调制器。但是,它的实现很复杂,作为替代方案,提出了一种基于高Q因子Fabry-Perot微谐振器的电光调制器。进行了两种类型的调制器的比较分析,突出了基于高Q因子Fabry-Perot微谐振器的调制器的优势。

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