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Infrared photodetectors fabricated from self-organized quantum dot nanostructures

机译:由自组织量子点纳米结构制成的红外光电探测器

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Abstract: Intersubband carrier transitions in either the conduction or valence bands of III-V semiconductors are important for the design of a new generation of optoelectronic devices. These transitions have been successfully used to demonstrate the operation of a new class of infrared lasers and detectors. In this paper, we discuss the use of intersubband transitions in quantum dot nanostructures for infrared sensing. The quantum dot structures in our work allow the detection of normal-incidence light. This is promising for the design of future focal plane arrays that do not require a grating structure to scatter incident light into the correct polarization for detection via intersubband transitions. The quantum dot infrared photodetectors in this work also exhibit an intrinsic photovoltaic effect. Both photoconductive and photovoltaic operation has been demonstrated at low temperatures (40 K) with responsivities on the order of tens of mA/W for bias voltages less than 0.5 V. Detectivities ranging from 2 $MUL 10$+8$/ cmHz$+$HLF$//W to 7 $MUL 10$+9$/ cmHz$+$HLF$//W have been measured in devices operating in either the photovoltaic or photoconductive mode. We have demonstrated that the quantum dot structures have the capability to detect infrared light in the 9 to 13 $mu@m spectral band.!4
机译:摘要:III-V半导体的导带或价带中的子带间载流子跃迁对于新一代光电器件的设计很重要。这些过渡已成功用于演示新型红外激光器和探测器的操作。在本文中,我们讨论了量子点纳米结构中子带间跃迁的红外传感应用。我们工作中的量子点结构可以检测法向入射光。这对于未来的焦平面阵列的设计是有前途的,该阵列不需要光栅结构就可以将入射光散射到正确的偏振中,以通过子带间跃迁进行检测。这项工作中的量子点红外光电探测器也表现出固有的光电效应。已经证明,在低温(40 K)下,光电导和光伏操作在低于0.5 V的偏置电压下的响应度约为数十mA / W。探测范围从2 $ MUL 10 $ + 8 $ / cmHz $ + $ HLF $ // W至7 $ MUL 10 $ + 9 $ / cmHz $ + $ HLF $ // W已在以光伏或光导模式工作的设备中进行了测量。我们已经证明,量子点结构具有检测9至13μm@ m光谱带中的红外光的能力!4

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