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Noise spectrum measurements of a midwave, interband cascade infrared photodetector with 33 nm wide electron barrier

机译:具有33nm宽电子屏障的中空,中空的噪声谱测量,具有33 nm宽电子屏障

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Interband cascade infrared photodetectors (ICIPs) potentially offer mid-wave infrared detection at very high operating temperatures due to their nearly ideal photovoltaic operation. An ICIP typically makes use of several cascade stages grown in series, each of which consists of an active absorption region with a mid-wave cutoff wavelength, an intra-band relaxation region for electron transport and an inter-band tunneling region to enable electron transport to the next stage. The latter two also effectively act as a hole-barrier (hB) and an electron-barrier (eB), respectively, forming a preferential path for each carrier. Here, an ICIP with a relatively large eB was investigated. One of the key parameters to measure for detector performance is the noise spectrum, particularly to observe the behavior at low frequencies where the noise is often much larger than estimates based on the ideal shot noise expression would predict. This paper presents the results of noise spectrum measurements of differently sized ICIP devices, taken using an external trans-impedance amplifier with a cooled, internal impedance converter and a cooled feedback resistor. Measurements were taken at different operating temperatures and voltage biases in order to determine the noise-dependence on each.
机译:InterBand级联红外光电探测器(ICIP)由于其几乎理想的光伏操作而在非常高的操作温度下可能提供中波红外检测。 ICIP通常利用串联生长的几个级联阶段,每个级联由具有中波截止波长的主动吸收区域组成,用于电子传输的带内弛豫区域和带间隧道区域,以实现电子传输到下一个阶段。后两者还有效地作为空穴屏障(HB)和电子屏障(EB),形成每个载体的优先路径。这里,研究了具有相对较大的EB的ICIP。测量检测器性能的关键参数之一是噪声频谱,特别是在噪声的低频率下观察噪声的行为通常大于基于理想射击噪声表达式的估计。本文介绍了不同大小的ICIP器件的噪声频谱测量结果,使用具有冷却的内部阻抗转换器和冷却的反馈电阻器的外部跨阻气机拍摄。在不同的操作温度和电压偏压下进行测量,以确定每个的噪声依赖。

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