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Broadband mid-infrared hollow core photonic bandgap fiber for multi-component trace-gas sensing

机译:用于多组分痕量气体传感的宽带中红外空芯光子带隙光纤

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As a class of hollow core photonic bandgap fiber (HC-PBGF), hollow core Bragg fibers (HC-BFs) with broadband transmission for multi-component trace-gas sensing have attracted much interest in recent years. In this paper, we numerically investigate the PBG characteristics of HC-BFs with the conventional periodic cladding (CPC) and with our previously proposed linearly-chirped cladding (LCC). The results show that the LCC structure is more suitable for broadening the omnidirectional PBG (OPBG) range by regulating the linear increment of cladding period or the layer number, which provide us with more degrees of freedom for designing a broadband HC-BF. Based on that, an optimized Te/PS (tellurium/polystyrene)-based HC-BF with the LCC for the wavelength range of OPBG covering the whole range of 3 to 5um is designed. Moreover, by using the ray-optics method, the transmission loss of HE_(11) mode is also calculated, verifying the feasibility of the Te/PS-based LCC with mid-infrared broadband low-loss transmission ranging from 3 to 5μm.
机译:作为一种空心光子带隙光纤(HC-PBGF),用于多组分痕量气体传感的宽带传输空心布拉格光纤(HC-BFs)近年来备受关注。在本文中,我们数值研究了常规周期包层(CPC)和我们之前提出的线性啁啾包层(LCC)的HC BFs的PBG特性。结果表明,通过调节包层周期的线性增量或层数,LCC结构更适合于拓宽全向PBG(OPBG)范围,这为我们设计宽带HC-BF提供了更多的自由度。在此基础上,设计了一种优化的Te/PS(碲/聚苯乙烯)基HC-BF,其LCC适用于OPBG的波长范围,覆盖整个范围3到5um。此外,利用射线光学方法计算了HE_11模的传输损耗,验证了Te/PS基中红外宽带低损耗LCC的可行性。

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