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Dielectric tube waveguides with absorptive cladding for broadband, low-dispersion and low loss THz guiding

机译:具有吸收包层的介质管波导,用于宽带,低色散和低损耗THz引导

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摘要

Research on terahertz waveguides is experiencing a tremendous growth due to their importance for compact and robust THz systems. However, designing compact, broadband, mechanically stable and environmentally shielded THz waveguides is still a challenge due to high losses of both metals and dielectrics in this frequency range. Here we report on a novel twist on the classical tube waveguide where we deliberately introduce a thick and highly lossy cladding layer. By this we attenuate the field in the cladding and thus prevent interference with the core field. This mechanism breaks the well-known ARROW guiding mechanism, and as a result, extremely broad bandwidth and low dispersion can be achieved with a very simple design. Since the main part of the field propagates inside the air-core, the propagation loss is still kept at a very low level. Simulations, analytical modelling and experiments verify our findings. The proposed THz waveguide is robust, insensitive to external perturbation and easy to handle, and thus the design represents a significant advance of the field of THz dielectric waveguides suitable for the 0.3-1 THz band which in the future will be important for ultrafast wireless communication systems.
机译:由于太赫兹波导对紧凑而坚固的太赫兹系统的重要性,因此其研究正经历着巨大的发展。然而,由于金属和电介质在该频率范围内的高损耗,设计紧凑,宽带,机械稳定且受环境屏蔽的太赫兹波导仍然是一项挑战。在这里,我们报道了经典管式波导的一种新颖扭曲,我们故意引入了厚且高损耗的包层。这样,我们可以衰减包层中的磁场,从而防止干扰纤芯场。这种机制打破了众所周知的ARROW引导机制,因此,通过非常简单的设计就可以实现极宽的带宽和低色散。由于磁场的主要部分在空心内部传播,因此传播损耗仍保持在非常低的水平。仿真,分析模型和实验验证了我们的发现。所提出的THz波导坚固耐用,对外部干扰不敏感并且易于处理,因此,该设计代表了适用于0.3-1 THz频段的THz介质波导领域的重大进步,这在未来对超快无线通信非常重要系统。

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