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Generation of Linearly Chirped Microwave Waveform With an Increased Time-Bandwidth Product Based on a Tunable Optoelectronic Oscillator and a Recirculating Phase Modulation Loop

机译:基于可调谐光电振荡器和循环相位调制回路的线性调频微波波形,其时带宽积增加

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Photonic generation of a linearly chirped microwave waveform with an increased time-bandwidth product (TBWP) based on a frequency-tunable optoelectronic oscillator (OEO) and a recirculating phase modulation loop (RPML) is proposed and experimentally demonstrated, for the first time to the best of our knowledge. In the proposed system, a continuous-wave (CW) light wave is divided into two parts: one is sent to the tunable OEO to generate a frequency-tunable microwave signal and the other is intensity-modulated by a switching signal at an intensity modulator to form a chirp-free optical pulse, which are then sent to the RPML, in which the chirp-free pulse is phase modulated by a parabolic waveform to generate a linearly chirped optical waveform. The recirculation of the linearly chirped optical waveform inside the loop would lead to the waveform to experience multiple phase modulations, thus multiplying its chirp rate. By beating the chirped waveform and an optical sideband from the OEO at a high-speed photodetector (PD), a linearly chirped microwave waveform is obtained. The key significance of the approach is that the chirp rate is significantly increased, leading to a significantly increased TBWP. In addition, the approach allows the generation of a linearly chirped frequency-tunable microwave waveform without using a separate microwave source. The technique is experimentally verified. The generation of a linearly chirped microwave waveform with an increased TBWP by 16 times is demonstrated.
机译:首次提出并通过实验证明了基于频率可调光电振荡器(OEO)和循环相位调制环路(RPML)的光线性产生的线性线性调频微波波形,其时带宽积增加(TBWP)。据我们所知。在所提出的系统中,连续波(CW)光波分为两部分:一个发送到可调OEO以生成频率可调的微波信号,另一个通过强度调制器上的开关信号进行强度调制。形成无线性调频光脉冲,然后将其发送到RPML,其中无线性调频脉冲通过抛物线波形进行相位调制,以生成线性线性调频光波形。环路内线性chi光波形的再循环将导致该波形经历多个相位调制,从而使其its速率倍增。通过在高速光电检测器(PD)上从OEO击败线性调频波形和光学边带,可以获得线性线性调频微波波形。该方法的关键意义在于,rp速率会显着增加,从而导致TBWP显着增加。另外,该方法允许在不使用单独的微波源的情况下产生线性chi频率可调的微波波形。该技术已通过实验验证。演示了线性chi线性微波波形的产生,其TBWP增加了16倍。

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