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用于太赫兹传感的负曲率空芯反谐振光纤。

Negative curvature hollow-core anti-resonant fiber for terahertz sensing.

出版信息

Appl Opt. 2020 Oct 1;59(28):8519-8525. doi: 10.1364/AO.395914.

Abstract

Hollow-core fibers are advantageous for chemical sensing as they facilitate liquid infiltration into the core over conventional porous core fiber. In addition, the requirement of less bulk material significantly decreases the effective material loss (EML). In this paper, a six circular cladding tube negative curvature hollow-core fiber (NC-HCF) is proposed for chemical sensing. Five different chemicals including chloroform, polylactic acid, , glycerin, and benzene are proposed to fill the core of the NC-HCF, and sensitivities are evaluated by full vector finite element method-based COMSOL software. Numerical results reveal that the proposed sensor exhibits very high relative sensitivity in a wide range of frequency. The fabrication of the proposed fiber is feasible by existing fabrication facilities as it contains realistic fabrication parameters. Hence, the proposed sensor can potentially be used as a chemical sensor especially in the medical, food, and industrial sectors as the five chemicals mentioned above carry great medical and food significance.

摘要

中空光纤在化学传感方面具有优势,因为它们便于液体渗透到传统多孔芯光纤的芯部。此外,对较少块状材料的需求显著降低了有效材料损耗(EML)。在本文中,提出了一种六圆包层管负曲率中空光纤(NC-HCF)用于化学传感。提出了五种不同的化学物质,包括氯仿、聚乳酸、甘油和苯,以填充 NC-HCF 的芯部,并通过基于全矢量有限元法的 COMSOL 软件评估灵敏度。数值结果表明,所提出的传感器在很宽的频率范围内具有非常高的相对灵敏度。由于该纤维包含现实的制造参数,因此可以通过现有的制造设备来制造,因此该传感器可以作为化学传感器使用,特别是在医疗、食品和工业领域,因为上述五种化学物质具有重要的医学和食品意义。

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