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Terahertz generation by four-wave mixing and guidance in diatomic teflon photonic crystal fibers

机译:通过四波混合和硅藻光子光子晶体纤维的四波混合和引导产生的太赫兹生成

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Terahertz radiation generation by four-wave mixing and low-loss propagation in a well optimized photonic crystal fiber has been presented here. Teflon with low-loss in the THz range has been considered where diatomic hexagonal crystalline symmetry in the core region is important for large modal overlap to efficiently generate THz radiation. The core and cladding of the fiber are made of Teflon with slightly different indices both at the pump and idler as well as THz frequencies. The core of the fiber consists of modified Teflon and Polyethylene inclusions of same radial dimension arranged in diatomic lattice with hexagonal symmetry. Input pump and idler fields are chosen to be at the frequencies of standard carbon dioxide and carbon monoxide lasers, respectively. The underlying photonic structure produces high efficiency of similar to 15% with respect to pump power and moderately tunable THz radiation at about 9.2 THz within a very short 6.5 m propagation length. The pump power can be varied to tune the THz signal and the idler frequency in certain range. The optimized design also provides a low-loss guidance with propagation and bending losses of less than 1 dB/km.
机译:这里介绍了通过四波混合和低损耗传播在这里通过四波混合和低损耗传播产生的太赫兹辐射。已经考虑了TEFLON在THz范围内具有低损失,其中核心区域中的硅藻六角形晶体对称对于大型模态重叠是重要的,以有效地产生THz辐射。纤维的芯和包层由Teflon制成,泵和惰轮略有不同的索引以及频率。纤维的核心由改性的Teflon和相同径向尺寸的聚乙烯夹杂物,其布置在具有六边形对称的硅藻土中。选择输入泵和惰轮部分分别选择标准二氧化碳和一氧化碳激光器的频率。底层光子结构在大约9.2至9至9 ZZ的泵浦功率和中度可调谐的THz辐射中产生高效率至15%,在非常短的6.5M传播长度内。泵功率可以变化以在某个范围内调整THz信号和惰轮频率。优化设计还提供了低于1 dB / km的传播和弯曲损耗的低损耗引导。

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