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首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Study the properties of metal-cladding nano-size optical fiber based on a new implementation of finite-difference time-domain
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Study the properties of metal-cladding nano-size optical fiber based on a new implementation of finite-difference time-domain

机译:基于时域有限差分新实现的金属包覆纳米光纤的性能研究

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摘要

The properties of metal-cladding nano-size optical fiber are investigated using a new implementation of finite-difference time-domain, in which the amendment form of Drude is used. The results reveal that the thickness of Ag-film greater than 110 nm is enough to shield the interference between nanosize fibers when the wavelength of incident light is 632 nm. This proves that the metal-cladding nano fiber has stronger tight-confinement ability than the air-cladding nano fiber. Meanwhile, although the confinement ability of metal-cladding non-uniform fiber declines slightly with the angle a between fiber surface and horizontal plane, the metal-cladding fiber can solve the problem of light energy loss caused by diameter non-uniformity in transmission process greatly. The experimental results reveal that metal-cladding nano-size optical fiber can improve transmission efficiency greatly. The behavior of metal-cladding nano fiber demonstrated may provide actual reference value for the development of optical applications of nano fiber. (C) 2015 Elsevier GmbH. All rights reserved.
机译:使用有限差分时域的新实现方式研究了金属包覆纳米级光纤的性能,其中使用了德鲁德的修正形式。结果表明,当入射光的波长为632 nm时,大于110 nm的Ag膜厚度足以屏蔽纳米级纤维之间的干涉。这证明了金属包覆纳米纤维比空气包覆纳米纤维具有更强的束缚能力。同时,尽管金属包层不均匀光纤的约束能力随光纤表面与水平面之间的夹角α而略有下降,但金属包层光纤可以解决传输过程中由于直径不均匀而造成的光能损失。 。实验结果表明,金属包覆纳米光纤可以大大提高传输效率。所展示的金属包覆纳米纤维的行为可为纳米纤维光学应用的发展提供实际参考价值。 (C)2015 Elsevier GmbH。版权所有。

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