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Development of mid-infrared light-emitting diodes for low-power optical gas sensors

机译:用于低功率光学气体传感器的中红外发光二极管的开发

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This work presents the experimental investigation of different techniques to improve the electrical and optical performance of mid-infrared antimonide-based semiconductor light-emitting diodes. A study of the current crowding effect, supported by spatially-resolved photocurrent measurements, allows the design of an optimal contact geometry. Additionally, a higher fraction of the generated light is redirected towards the top surface of the device thanks to the integration of a back reflector and a resonant-cavity design. Enhanced performance for mid-IR LEDs represents a significant step forward towards power efficient optical sensors for environmental, safety and health applications.
机译:这项工作提出了不同技术的实验研究,以改善基于中红外锑化物的半导体发光二极管的电学和光学性能。在空间分辨光电流测量的基础上,对当前的拥挤效应进行研究,可以设计出最佳的接触几何形状。另外,由于背反射器和谐振腔设计的集成,所产生的光的较高部分被重定向到设备的顶表面。中红外LED的增强性能代表了朝着面向环境,安全和健康应用的高功率光学传感器迈出的重要一步。

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