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All-optical ultrawideband monocycle and doublet generation using cascaded PPLN waveguides

机译:所有光学超空手带单循环和双层代使用级联PPLN波导

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Ultrawideband (UWB) is an attractive technology for short-range high-capacity wireless communication systems. A novel all-optical method for generating UWB pulses is proposed and theoretically analyzed using cascaded periodically poled LiNbO3 (PPLN) waveguides, The operation principle relies on the sum-frequency generation (SFG) in the first PPLN and the cascaded second-harmonic generation and difference-frequency generation (SHG+DFG) in the second PPLN. We simulate the proposed PPLN-based UWB pulses generation using the well-known coupled-mode equations describing the SFG and SHG+DFG processes. A pair of polarity-reversed UWB monocycle pulses is generated with a central frequency of 5 GHz and a 10 dB bandwidth of 8.75 GHz. Thus the fractional bandwidth is,175%,. Moreover, a pair of polarity-reversed UWB doublet pulses is also obtained. One has a central frequency of 5 GHz; a 10 dB bandwidth of 7.5 GHz, and a fractional bandwidth of 150%, and the other has a central frequency of 5 GHz, a 10 dB bandwidth of 3.75 GHz, and a fractional bandwidth of 75%. It is found that all generated pairs of polarity-reversed UWB monocycle and doublet pulses match well with the UWB definition of Federal Communications Commission (FCC).
机译:超宽带(UWB)是用于短距离的高容量无线通信系统的有吸引力的技术。一种用于产生UWB脉冲新颖的全光方法,提出并使用级联周期性极化铌酸锂(PPLN)波导理论分析,操作原理依赖于在第一PPLN和频产生(SFG)和级联二次谐波产生和差频产生(SHG + DFG)在第二PPLN。我们使用描述SFG和SHG + DFG工艺公知的耦合模方程模拟所提出的基于PPLN-UWB脉冲的产生。一对极性反转UWB单脉冲与5GHz的中心频率和8.75千兆赫的10 dB带宽生成。因此,分数带宽,175%,.此外,还获得一对极性反转UWB双峰脉冲。一个具有5GHz的中心频率; 7.5千兆赫的10 dB带宽和150%的相对带宽,而另一个具有5千兆赫,3.75千兆赫的10 dB带宽和75%的相对带宽的中心频率。研究发现,所有产生的对极性反转UWB单和双脉冲的联邦通信委员会(FCC)的UWB定义良好匹配。

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