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Microwave waveform generation with reconfigurable envelope and high fidelity based on spectrum compensated frequency-to-time mapping

机译:基于频谱补偿的频率-时间映射,具有可重构包络和高保真度的微波波形生成

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摘要

A photonic approach for generating radio frequency (RF) chirped and non-chirped waveforms with reconfigurable envelope and high fidelity is proposed and experimentally demonstrated based on frequency-to-time mapping (FTM). A space light modulator based pulse shaper is used for spectral shaping. To make full use of the available bandwidth of the pulse shaper, the output of an amplified mode-locked laser is used as a broadband optical source. A feedback scheme is proposed to compensate the absence of the amplified spontaneous emission spectrum in frequency-to-time mapping. Based on the spectrum compensated FTM, chirped and non-chirped waveforms with different envelopes and high fidelity are experimentally generated. (C) 2017 Elsevier Inc. All rights reserved.
机译:提出了一种用于产生具有可重构包络和高保真度的射频(RF)线性调频和非线性调频波形的光子方法,并基于频率-时间映射(FTM)进行了实验证明。基于空间光调制器的脉冲整形器用于频谱整形。为了充分利用脉冲整形器的可用带宽,放大锁模激光器的输出用作宽带光源。提出了一种反馈方案来补偿频率到时间映射中不存在放大的自发发射光谱。基于频谱补偿的FTM,实验生成了具有不同包络和高保真度的chi和非chi波形。 (C)2017 Elsevier Inc.保留所有权利。

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