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用于中红外应用的硫属化物空芯反谐振光纤的设计与制造。

Design and fabrication of a chalcogenide hollow-core anti-resonant fiber for mid-infrared applications.

出版信息

Opt Express. 2023 Feb 27;31(5):7659-7670. doi: 10.1364/OE.482941.

Abstract

Chalcogenide hollow-core anti-resonant fibers (HC-ARFs) are a promising propagation medium for high-power mid-infrared (3-5 µm) laser delivery, while their properties have not been well understood and their fabrications remain challenging. In this paper, we design a seven-hole chalcogenide HC-ARF with touching cladding capillaries, which was then fabricated from purified AsS glass by combining the "stack-and-draw" method with a dual gas path pressure control technique. In particular, we predict theoretically and confirm experimentally that such medium exhibits higher-order mode suppression properties and several low-loss transmission bands in the mid-infrared spectrum, with the measured fiber loss being as low as 1.29 dB/m at 4.79 µm. Our results pave the way for the fabrication and implication of various chalcogenide HC-ARFs in mid-infrared laser delivery systems.

摘要

硫属化物空芯反谐振光纤(HC-ARF)是一种很有前途的高功率中红外(3-5μm)激光传输的传播介质,但其性能尚未得到很好的理解,其制造仍然具有挑战性。在本文中,我们设计了一种具有触须包层毛细管的七孔硫属化物 HC-ARF,然后通过结合“堆叠和拉伸”方法和双气路压力控制技术,由纯化的 AsS 玻璃制造而成。特别地,我们从理论上预测并通过实验证实,这种介质在中红外光谱中表现出更高阶模式抑制特性和几个低损耗传输带,在 4.79μm 处测量的光纤损耗低至 1.29dB/m。我们的结果为各种硫属化物 HC-ARF 在中红外激光传输系统中的制造和应用铺平了道路。

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