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Multiple resonant coupling mechanism for suppression of higher-order modes in all-solid photonic bandgap fibers with heterostructured cladding

机译:多重共振耦合机制用于抑制具有异质结构包层的全固态光子带隙光纤中的高阶模

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摘要

In this paper, we propose a novel mechanism for suppression of higher-order modes (HOMs), namely multiple resonant coupling, in all-solid photonic bandgap fibers (PBGFs) with effectively large core diameters. In an analogy to the well-known tight-binding theory in solid-state physics, multiple anti-resonant reflecting optical waveguide (ARROW) modes bound in designedly arranged defects in the cladding make up Bloch states and resultant photonic bands with a finite effective-index width, which contribute to the suppression of HOMs. In particular, contrary to the conventional method for the HOM suppression using the index-matching of the HOMs in the core of the PBGF and the defect mode arranged in the cladding, the proposed mechanism guarantees a broadband HOM suppression without a precise structural design. This effect is explained by the multiple resonant coupling, as well as an enhanced confinement loss mechanism which occurs near the condition satisfying the multiple resonant coupling. Moreover, we show that the proposed structure exhibits a lower bending loss characteristic when compared to the conventional all-solid PBGFs. The simultaneous realization of the single-mode operation and the low bending loss property is due to the novel cladding concept named as heterostructured cladding. The proposed structure also resolves the issue for the increased confinement loss property in the first-order photonic bandgap (PBG) at the same time.
机译:在本文中,我们提出了一种抑制高阶模(HOMs)的新颖机制,即有效地纤芯直径较大的全固态光子带隙光纤(PBGF)中的多重共振耦合。与固态物理学中众所周知的紧密束缚理论类似,束缚在包层中设计排列的缺陷中的多个反共振反射光波导(ARROW)模式构成Bloch态,并形成有限的有效光子带。索引宽度,有助于抑制HOM。特别地,与使用PBGF核心中的HOM的索引匹配和布置在包层中的缺陷模式来抑制HOM的常规方法相反,所提出的机制保证了宽带HOM抑制而没有精确的结构设计。这种效应可以通过多重共振耦合以及在满足多重共振耦合的条件附近发生的增强的限制损耗机制来解释。此外,我们表明,与传统的全固态PBGF相比,所提出的结构具有较低的弯曲损耗特性。单模操作和低弯曲损耗特性的同时实现是由于新颖的包层概念被称为异质结构包层。所提出的结构还解决了同时增加一阶光子带隙(PBG)的局限损失特性的问题。

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