Low-loss tellurite anti-resonant hollow-core fiber for 2–10 μm laser delivery
Jun Zhu, Chengzhen Liu, Z X Zhang, Yanjie Chang, Hao Zhang, Xusheng Xiao, Yang Xiao, Yantao Xu 等 9 位
Chinese Academy of Sciences Xi'an Institute of Optics and Precision Mechanics University of Chinese Academy of Sciences
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摘要与影响
We report a low-loss tellurite anti-resonant hollow-core fiber (AR-HCF) for mid-infrared laser delivery across the 2–10 μm spectral range. By optimizing the fabrication process with precise pressure control, we achieve a record-low loss of 0.3 ± 0.02 dB/m at 4.65 μm while extending transmission capability up to 10 μm, significantly outperforming silica-based AR-HCFs. The fiber exhibits exceptional power handling capability, enabling uncooled operation at 30.3 W input (1.976 μm) and 14.3 W output through a 1-meter-long fiber, and maintains stable transmission for 40 minutes (0.77% RMS fluctuation). Beam quality remains near-diffraction-limited (M2 < 1.2) across power levels, confirming robust single-mode performance. Additionally, approaching watt-level transmission at 4.65 μm (61% efficiency, 0.5-meter-long fiber) highlights its mid-infrared potential. This work establishes tellurite AR-HCFs as a transformative platform for broadband mid-infrared applications, combining thermal stability, low loss, and exceptional beam quality.
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工程Photonic Crystal and Fiber Optics
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