变偏置和光密度下AlGaAs/GaAs QWIP稳态光导行为的量子力学建模

Soumitra Roy Joy, F. M. Mohammedy
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摘要

采用一阶玻恩近似的量子力学方法对工作在8 ~ 9μm长波区的AlGaAs/GaAs量子阱红外探测器进行了数值模拟。光电流谱的数值分析以及扩大相同的为8.31μm峰值波长是发现与实验结果密切的相似之处为8.55μm的峰值波长阿尔维斯等人报道。随后我们更进一步探索QWIP photo-response行为的强烈的极限electron-photon交互和发现,除了修改光电流谱的相对大小和光谱相应关系的转变,在中等偏置和高光密度条件下,光-物质耦合作用下的强非线性光响应具有适应多色检测机制的潜力。
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Quantum mechanical modelling of steady state photoconductive behaviour of AlGaAs/GaAs QWIP at varying bias and optical density
A quantum mechanical approach of first order born approximation is taken to numerically model AlGaAs/GaAs Quantum Well Infrared detector that operates at long wavelength region (8-9μm). Our numerical analysis of the photocurrent spectra as well as the broadening of the same at 8.31μm peak wavelength is found to be in close resemblance with the experimental result with 8.55μm peak wavelength as reported by Alves et. al. We have gone one step further by subsequently exploring the photo-response behavior of QWIP at the limit of strong electron-photon interaction and found that, besides the modification in photo-current spectrum in terms of relative magnitude and spectral shift, the strong non-linear photo-response enforced by light-matter coupling possesses the potential of accommodating multi-color detection mechanism under moderate bias and high optical density in active region.
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