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首页> 外文期刊>IEEE Photonics Technology Letters >High-Resolution Brillouin Optoelectronic Oscillator Using High-Order Sideband Injection-Locking
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High-Resolution Brillouin Optoelectronic Oscillator Using High-Order Sideband Injection-Locking

机译:采用高阶边带注入锁定的高分辨率布里渊光电振荡器

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摘要

Microwave signals with high frequency, flexible tunability, and low phase noise are highly desired in signal processing and radar systems. In this letter, an optical injection-locking scheme using the high-order phase modulation sideband is introduced to realize a stable Brillouin optoelectronic oscillator (OEO). Pure microwave signals up to 40 GHz with low phase noise are obtained using an electrical drive signal below 5 GHz. A flexible frequency tuning with high resolution of 8 MHz is maintained by controlling the electrical drive signal and the slave laser, and the side mode suppression ratio is higher than 60 dB. The phase noise of the OEO-generated microwave signals under different master lasers is measured and compared to verify the significance of the master lasers with ultralow frequency noise. The maximum frequency drift of a 10.79-GHz signal is 1.4 kHz within 600 s, showing the stability of the proposed Brillouin OEO.
机译:在信号处理和雷达系统中非常需要具有高频,灵活的可调性和低相位噪声的微波信号。在本文中,介绍了一种使用高阶相位调制边带的光注入锁定方案,以实现稳定的布里渊光电振荡器(OEO)。使用低于5 GHz的电驱动信号可获得高达40 GHz的低相位噪声的纯微波信号。通过控制电驱动信号和从激光器,可以保持8 MHz高分辨率的灵活频率调谐,并且旁模抑制比高于60 dB。测量并比较OEO产生的微波信号在不同主激光器下的相位噪声,以验证具有超低频噪声的主激光器的重要性。 10.79 GHz信号的最大频率漂移在600 s内为1.4 kHz,这表明了所提出的布里渊OEO的稳定性。

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