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Breaking the limitation of mode building time in an optoelectronic oscillator

机译:打破了光电振荡器中模式建立时间的限制

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摘要

An optoelectronic oscillator (OEO) is a microwave photonic system with a positive feedback loop used to create microwave oscillation with ultra-low phase noise thanks to the employment of a high-quality-factor energy storage element, such as a fiber delay line. For many applications, a frequency-tunable microwave signal or waveform, such as a linearly chirped microwave waveform (LCMW), is also needed. Due to the long characteristic time constant required for building up stable oscillation at an oscillation mode, it is impossible to generate an LCMW with a large chirp rate using a conventional frequency-tunable OEO. In this study, we propose and demonstrate a new scheme to generate a large chirp-rate LCMW based on Fourier domain mode locking technique to break the limitation of mode building time in an OEO. An LCMW with a high chirp rate of 0.34 GHz/μs and a large time-bandwidth product of 166,650 is demonstrated.
机译:光电振荡器(OEO)是具有正反馈回路的微波光子系统,由于采用了诸如光纤延迟线之类的高质量因子储能元件,因此可产生具有超低相位噪声的微波振荡。对于许多应用,还需要频率可调的微波信号或波形,例如线性chi微波波形(LCMW)。由于在振荡模式下建立稳定的振荡需要较长的特征时间常数,因此无法使用常规的频率可调OEO来生成具有大线性调频比的LCMW。在这项研究中,我们提出并演示了一种新的方案,该方案基于傅立叶域模式锁定技术来生成大型线性调频LCMW,以打破OEO模式建立时间的限制。展示了具有0.34 chiGHz /μs的高chi速率和166,650的大时间带宽积的LCMW。

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