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Optical generation of millimeter-wave pulses using a fiber Bragg grating in a fiber-optics system

机译:在光纤系统中使用光纤布拉格光栅光学生成毫米波脉冲

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摘要

A scheme is proposed to transform an optical pulse into a millimeter-wave frequency modulation pulse by using a weak fiber Bragg grating (FBG) in a fiber-optics system. The Fourier transformation method is used to obtain the required spectrum response function of the FBG for the Gaussian pulse, soliton pulse, and Lorenz shape pulse. On the condition of the first-order Born approximation of the weak fiber grating, the relation of the refractive index distribution and the spectrum response function of the FBG satisfies the Fourier transformation, and the corresponding refractive index distribution forms are obtained for single-frequency modulation and linear-frequency modulation millimeter-wave pulse generation. The performances of the designed fiber gratings are also studied by a numerical simulation method for a supershort pulse transmission.
机译:提出了一种在光纤系统中通过使用弱光纤布拉格光栅(FBG)将光脉冲转换为毫米波频率调制脉冲的方案。傅里叶变换方法用于获得针对高斯脉冲,孤子脉冲和洛伦兹形状脉冲的FBG所需的频谱响应函数。在弱纤维光栅的一阶Born近似的条件下,FBG的折射率分布与光谱响应函数的关系满足傅立叶变换,并获得了单频调制的相应折射率分布形式。以及线性调频毫米波脉冲的产生。还通过数值模拟方法研究了超短脉冲传输的设计光纤光栅的性能。

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