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A novel technique to generate high frequency microwave signal based on Brillouin phase modulation to amplitude modulation conversion

机译:基于布里渊相位调制到幅度调制转换的高频微波信号产生新技术

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In this paper, the principle of phase modulation (PM) and Brillouin phase modulation to amplitude modulation (AM) conversion are analyzed. And a novel ring configuration to generate high order Brillouin scattering signals is proposed. The first-order to seventh-order Stokes signals are obtained by the experiment. Based on this new method, the sideband modulated by PM is selectively amplified by the gain spectrum of the corresponding Stokes. Finally, the amplified signal is beat with the optical carrier signal and other side-band signals to generate high frequency microwave signals. This technique can be utilized to generate microwave signals with frequency of n times of 11GHz using only one laser. This method has the advantages of low cost and high efficiency of frequency multiple. And the feasibility of this method is demonstrated by simulation and experiment.
机译:本文分析了相位调制(PM)和布里渊相位调制到幅度调制(AM)转换的原理。并提出了一种新型的环状结构,用于产生高阶布里渊散射信号。通过实验获得一阶到七阶斯托克斯信号。基于这种新方法,由PM调制的边带被相应的Stokes的增益谱选择性地放大。最后,放大的信号与光载波信号和其他边带信号一起拍打,以产生高频微波信号。可以利用此技术仅使用一个激光器来生成n倍11 GHz频率的微波信号。该方法具有成本低,倍频效率高的优点。并通过仿真和实验证明了该方法的可行性。

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