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Hollow-core infrared fiber incorporating metal-wire metamaterial

机译:采用金属线超材料的空心红外纤维

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摘要

Infrared (IR) light is considered important for short-range wireless communication, thermal sensing, spectroscopy, material processing, medical surgery, astronomy etc. However, IR light is in general much harder to transport than optical light or microwave radiation. Existing hollow-core IR waveguides usually use a layer of metallic coating on the inner wall of the waveguide. Such a metallic layer, though reflective, still absorbs guided light significantly due to its finite Ohmic loss, especially for transverse-magnetic (TM) light. In this paper, we show that metal-wire based metamaterials may serve as an efficient TM reflector, reducing propagation loss of the TM mode by two orders of magnitude. By further imposing a conventional metal cladding layer, which reflects specifically transverse-electric (TE) light, we can potentially obtain a low-loss hollow-core fiber. Simulations confirm that loss values for several low-order modes are comparable to the best results reported so far.
机译:红外(IR)光被认为对短距离无线通信,热感测,光谱学,材料加工,医学手术,天文学等很重要。但是,红外光通常比光学或微波辐射难运输。现有的空心IR波导通常在波导的内壁上使用一层金属涂层。这样的金属层尽管是反射性的,但由于其有限的欧姆损耗而仍能显着吸收引导光,尤其是对于横向磁(TM)光而言。在本文中,我们表明基于金属线的超材料可以用作有效的TM反射器,从而将TM模式的传播损耗降低两个数量级。通过进一步施加传统的金属包层,该层可以反射特定的横向电(TE)光,我们可以潜在地获得低损耗的空心光纤。仿真证实,几种低阶模式的损耗值可与迄今为止报道的最佳结果相媲美。

著录项

  • 作者

    Yan Min; Mortensen Asger;

  • 作者单位
  • 年度 2009
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
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