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All-optical pulse compression based on stimulated Brillouin scattering in optical fibers

机译:基于光纤中受激布里渊散射的全光脉冲压缩

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Pulse compression processing based on stimulated Brillouin scattering (SBS) in an optical fiber is theoretically and experimentally demonstrated. Broadband microwave signal is electro-optically modulated onto the pump lightwave that is launched into one end of the fiber. Acoustic wave in the fiber inherits the amplitude and phase information of the pump lightwave and thus the coupling between the acoustic wave and pump lightwave leads to the auto-correlated process of the pump lightwave as well as the modulated microwave signal. Derivation of the SBS coupling equations shows that the short-pulse probe lightwave amplified by the pump lightwave possesses the nature of auto-correlation formula. All-optical pulse compression of the broadband microwave signal is implemented after a subtraction between the detected probe pulse with and without SBS. A proof-of-concept experiment is carried out. The pulse compression of a linear frequency-modulated microwave signal with 1 GHz sweep range at the carrier frequency of 4.3 GHz is successfully realized, which well matches the theoretical analysis.
机译:理论和实验证明了基于光纤中受激布里渊散射(SBS)的脉冲压缩处理。宽带微波信号被电光调制到泵浦光波中,该光波被发射到光纤的一端。光纤中的声波会继承泵浦光波的幅度和相位信息,因此声波与泵浦光波之间的耦合会导致泵浦光波以及调制的微波信号的自相关过程。 SBS耦合方程的推导表明,由泵浦光波放大的短脉冲探针光波具有自相关公式的性质。在带和不带SBS的检测到的探测脉冲之间进行减法后,对宽带微波信号进行全光脉冲压缩。进行了概念验证实验。在载波频率为4.3 GHz的情况下,成功实现了扫描范围为1 GHz的线性调频微波信号的脉冲压缩,这与理论分析非常吻合。

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