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The effect of dielectric absorption on the transmission characteristics of terahertz hollow fibers

机译:介电吸收对太赫兹中空纤维传输特性的影响

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摘要

Hollow fiber with internal metal and dielectric coating films is one of the promising media for THz transmission. Although the dielectric layer can effectively reduce the transmission loss, it brings additional loss due to its absorption. It has been shown in mid-infrared region that the optimum thickness of the dielectric layer becomes smaller due to absorption. For terahertz hollow fibers, the film thickness of the dielectric layer become much larger and the transmission characteristics are more dependent on the dielectric absorption. The influences of dielectric absorption on the structure parameters of the dielectric-coated metallic hollow fibers are discussed. Calculation results show that the optimum refractive index of the dielectric layer, which is 1.41 for perfect transparent dielectrics, turns out to be greater. The absorption tolerance is also investigated considering the factors of inner diameter, the refractive index, and the transmission wavelength. It is shown that absorption tolerance decreases when the inner diameter becomes smaller or when the transmission wavelength becomes larger. In extreme cases of small inner-diameter or large transmission wavelength, the absorption tolerance is not existent. Because the loss of the dielectric-coated metallic hollow fiber is larger than that of metallic hollow fiber even the dielectric layer has no absorption. The calculation results are helpful to the structure design and material selection in the fabrication of terahertz hollow fibers.
机译:具有内部金属和介电涂层膜的空心纤维是有希望的THz传输介质之一。尽管介电层可以有效地减少传输损耗,但是由于其吸收而带来了额外的损耗。已经显示在中红外区域中,由于吸收,介电层的最佳厚度变小。对于太赫兹中空纤维,介电层的膜厚度变得更大,并且传输特性更多地取决于介电吸收。讨论了介电吸收对介电涂层金属中空纤维结构参数的影响。计算结果表明,电介质层的最佳折射率对于完美的透明电介质为1.41,事实证明更大。还考虑内径,折射率和透射波长的因素来研究吸收耐受性。示出了当内径变小或透射波长变大时,吸收耐受性降低。在小内径或大透射波长的极端情况下,不存在吸收公差。因为涂覆有电介质的金属中空纤维的损耗大于金属中空纤维的损耗,所以即使电介质层也没有吸收。计算结果有助于太赫兹空心纤维的结构设计和材料选择。

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  • 会议地点 San Jose CA(US)
  • 作者单位

    Department of Communication Science and Engineering, Fudan University, Shanghai 200433, China;

    Department of Communication Science and Engineering, Fudan University, Shanghai 200433, China;

    Graduate School of Engineering, Tohoku University, Sendai 980-8579, Japan;

    Sendai National College of Technology, Sendai, 989-3128, Japan;

    Sendai National College of Technology, Sendai, 989-3128, Japan Miyagi National College of Technology, Sendai, 981-1239, Japan;

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