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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >Simultaneous generation of ultra-wideband LFM and phase-coded LFM microwave waveforms based on an improved frequency-sweeping OEO
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Simultaneous generation of ultra-wideband LFM and phase-coded LFM microwave waveforms based on an improved frequency-sweeping OEO

机译:基于改进的频率清扫OEO同时同时产生超宽带LFM和相位编码的LFM微波波形

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摘要

Simultaneous generation of linear frequency-modulated (LFM) and phase-coded LFM microwave waveform with a large time-bandwidth-product (TBWP) based on an improved frequency-sweeping optoelectronic oscillator (OEO) is proposed and experimentally demonstrated. The key significance of the frequency-sweeping OEO is that a near-zero-dispersion single-mode-fiber (SMF) is introduced into the loop, which can not only avoid the limitation of high frequency oscillation caused by dispersion, but also construct long OEO delay loop to realize large temporal duration. A fiber-Bragg-grating Fabry-Perot (FBG-FP) with large reflection bandwidth is also adopted to construct microwave photonic filter (MPF) with wide tuning range of central frequency. Thus, the limitations on temporal duration and oscillation frequency are solved and a LFM microwave waveform with large TBWP can be generated. Simultaneously, by modulating the optical sideband from the MPF and beating the phase-modulated signal with a portion of frequency-sweeping laser light, a phase-coded LFM microwave waveform can be generated. In the experimental demonstration, a LFM microwave waveform with a chirp rate of 0.736 GHz/mu s and a large TBWP of 173,856 is generated, and reconfiguring central frequency and bandwidth is also completed. Simultaneously, a phase-coded LFM microwave waveform with a bandwidth of 8 GHz and a TBWP of 173,856 is also experimentally demonstrated.
机译:同时产生的线性频率调制(LFM),提出具有大基于改进的频率扫描光电振荡器(OEO)时间 - 带宽积(TBWP)相位编码LFM微波波形和实验证明。频率扫描OEO的关键意义在于,近零色散单模光纤(SMF)被引入到回路中,不仅能避免因分散高频振荡的限制,而且还构建长OEO延迟循环实现大持续时间。一种纤维布喇格光栅具有大的反射带宽的法布里 - 珀罗(FBG-FP)也采用构建微波光子滤波器(MPF)与中心频率的宽调谐范围。因此,在持续时间和振荡频率的限制被解决,并且可以生成具有大TBWP一个LFM微波波形。同时,通过调制从MPF光边带和同频率扫描的激光的部分跳动的相位调制信号,可以产生一个相位编码LFM微波波形。在试验示范,产生具有的0.736千兆赫/亩秒的啁啾率和大的TBWP一个173856 LFM微波波形,和重新配置中心频率和带宽也完成。同时,用8千兆赫的带宽和173856一个TBWP一个相位编码LFM微波波形也实验证明。

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