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Characterization of self-assembled InGaAs/InGaP quantum dot mid-infrared photoconductive detectors grown by low-pressure MOCVD

机译:低压MOCVD法制备的自组装InGaAs / InGaP量子点中红外光电导探测器的表征

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Abstract: We report the first self-assembled InGaAs/InGaP quantum dot intersubband infrared photoconductive detectors (QDIPs) grown on semi-insulating GaAs substrate by low pressure metal organic chemical vapor deposition (MOCVD). The InGaAs quantum dots were constructed on an InGaP matrix as self assembling in Stranski-Krastanow growth mode in optimum growth conditions. The detector structure was prepared for single layer and multi-stacked quantum dots for active region. Normal incident photoconductive response was observed at a peak wavelength of 5.5 micrometer with a high responsivity of 130 mA/W, and a detectivity of 4.74 $MUL 10$+7$/ cm Hz$+$HLF$//W at 77 K for multi-stack QDIP. Low temperature photoresponse of the single quantum dot photodetector was characterized. Peak response was obtained between 16 K and 60 K. The detailed dark current noise measurements were carried on single and multistack quantum dot infrared detectors. High photoconductive gain as 7.6 $MUL 10$+3$/ biased at 0.5 V results in increasing the intersubband carrier relaxation time as two order of magnitude compared quantum well infrared photodetectors. !20
机译:摘要:我们报道了第一台通过低压金属有机化学气相沉积(MOCVD)在半绝缘GaAs衬底上生长的自组装InGaAs / InGaP量子点子带间红外光电导探测器(QDIP)。在最佳生长条件下,以Stranski-Krastanow生长模式自组装在InGaP矩阵上构建InGaAs量子点。探测器结构是为有源区域的单层和多层量子点准备的。在77 K下,在5.5微米的峰值波长处观察到法向入射光导响应,具有130 mA / W的高响应度和4.74 $ MUL 10 $ + 7 $ / cm Hz $ + $ HLF $ // W的灵敏度多栈QDIP。表征了单量子点光电探测器的低温光响应。在16 K和60 K之间获得了峰值响应。详细的暗电流噪声测量是在单堆和多堆量子点红外探测器上进行的。高光电导增益为7.6 $ MUL 10 $ + 3 $ /,偏置在0.5 V,导致子带间载流子弛豫时间增加,这是量子阱红外光电探测器的两个数量级。 !20

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