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Investigation of single-mode anti-resonant hollow-core THz fibers

机译:单模防谐振空心核心THZ纤维的研究

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摘要

Single-mode fiber plays an important role in the applications of THz technology. Serving as one of the optimal choices of THz fiber, hollow-core anti-resonant fiber (ARF) with single-layer anti-resonant elements has advantages of low transmission loss, high damage threshold, low dispersion but disadvantage of single mode which can by realized by the high-order-mode (HOM) suppression effect. In this paper, the key factor affecting the HOM suppression effect in THz ARF is investigated and confirmed to be the cross-sectional area ratio of cladding tubes inner side with fiber core, besides, the ratio will slightly change with the variation of the anti-resonant period of THz ARF where the cladding tubes have different shell thickness. By optimizing the anti-resonant elements of THz ARF from round tubes to semielliptical tubes, a high-performance single-mode THz fiber is proposed and the confinement loss of high-order-mode is confirmed larger than 24 dB/m at the same time that of fundamental-mode is controlled less than 0.4 dB/m.
机译:单模光纤在THZ技术的应用中起着重要作用。作为THz光纤的最佳选择之一,具有单层防谐振元件的空心核抗共振纤维(ARF)具有低传输损耗,高损伤阈值,低分散但单模缺点的优点由高阶模式(HOM)抑制效果实现。在本文中,研究了影响HOM抑制效果的关键因素,并确认是纤维芯的包层管内侧的横截面积比,此外,随着抗的变化,该比率略有变化。包层管具有不同的壳厚度的THz ARF的共振时期。通过优化从圆形管到半椭圆管的THz ARF的防谐振元件,提出了一种高性能单模THz光纤,并且同时确认高阶模式的限制损失大于24 dB / m基本模式的基本模式的控制小于0.4 dB / m。

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