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基于镝掺杂硫族化物波导光致发光的二氧化碳中红外传感

Carbon dioxide mid-infrared sensing based on Dy-doped chalcogenide waveguide photoluminescence.

作者信息

Bodiou Loïc, Baillieul Marion, Nazabal Virginie, Lemaitre Jonathan, Benardais Albane, Meziani Sofiane, Lorrain Nathalie, Dumeige Yannick, Nemec Petr, Charrier Joël

出版信息

Opt Lett. 2023 Mar 1;48(5):1128-1131. doi: 10.1364/OL.483613.

Abstract

Climate-active gases, notably carbon dioxide (CO), methane (CH), and nitrous oxide (NO), display fundamental absorption bands in the mid-infrared (mid-IR). The detection and monitoring of those gases could be enabled by the development of mid-IR optical sources. Broadband mid-IR on-chip light emission from rare-earth-doped chalcogenide photonic integrated circuits could provide a compact, efficient, and cost-effective gas sensing solution. Mid-IR photoluminescence of dysprosium-doped selenide ridge waveguides obtained under optical pumping at a telecommunication wavelength (∼1.3 µm) is investigated for Dy ion concentrations in the 2500-10,000 ppmw range. CO detection at around 4.3 µm is then demonstrated based on absorption of this broadband mid-IR emission.

摘要

气候活性气体,特别是二氧化碳(CO₂)、甲烷(CH₄)和一氧化二氮(N₂O),在中红外(mid-IR)波段具有基本吸收带。这些气体的检测和监测可以通过开发中红外光源来实现。稀土掺杂硫族化物光子集成电路产生的宽带中红外片上发光可以提供一种紧凑、高效且经济高效的气体传感解决方案。研究了在电信波长(约1.3 µm)的光泵浦下获得的镝掺杂硒化物脊形波导在2500 - 10,000 ppmw范围内镝离子浓度的中红外光致发光。然后基于这种宽带中红外发射的吸收,展示了在4.3 µm左右的CO₂检测。

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