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首页> 外文期刊>IEEE Photonics Technology Letters >Optically Controlled Low-Distortion Delay of GHz-Wide Radio-Frequency Signals Using Slow Light in Fibers
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Optically Controlled Low-Distortion Delay of GHz-Wide Radio-Frequency Signals Using Slow Light in Fibers

机译:使用光纤中的慢光对GHz范围的射频信号进行光控制的低失真延迟

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摘要

Continuously tunable delay of broadband analog signals for microwave photonics applications is described and demonstrated, based on stimulated Brillouin scattering (SBS) in optical fibers. The optical spectrum of the pump laser is synthesized using chirp control, in order to obtain a broadened SBS “slow light” process, with long delay and low amplitude and phase distortions. The resulting SBS process is applied to delay 1-GHz-wide linear frequency modulated radio-frequency signals of arbitrary carrier frequency. Delays up to 230 ps are observed, with a worst-case sidelobe suppression ratio of $-$26 dB.
机译:基于光纤中的受激布里渊散射(SBS),描述和演示了用于微波光子学的宽带模拟信号的连续可调延迟。泵浦激光器的光谱是使用线性调频控制合成的,以便获得扩展的SBS“慢光”过程,具有较长的延迟以及较低的幅度和相位失真。所得的SBS处理应用于延迟为1 GHz的任意载波频率的线性调频射频信号。观察到高达230 ps的延迟,最坏情况的旁瓣抑制比为$-$ 26 dB。

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