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Time-dependent internal Quantum Efficiency and diffusion Modulation Transfer Function of N/P photodiodes

机译:N / P光电二极管随时间变化的内部量子效率和扩散调制传递函数

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The minority carrier continuity equation has been solved with the Green's function approach in a N/P photodiode under the low-level injection assumption. The analytical solution obtained with this approach depends on the three spatial coordinates and on time. The diffusion and the collection of the excess minority carriers have been studied during the transitional period corresponding to very short integration times. The internal Quantum Efficiency and the diffusion Modulation Transfer Function have been calculated according to time. The simulations showed that they evolve with time until their steady-state values. When the integration time is very short, this evolution has to be taken into account for the estimation of the sensitivity of a photodiode and the contrast on an image of a sensor based on several adjacent N/P-type photodiodes.
机译:在低电平注入假设下,N / P光电二极管中的格林函数方法已解决了少数载流子连续性方程。用这种方法获得的解析解取决于三个空间坐标和时间。在过渡时期,对应于非常短的整合时间,研究了过量少数载流子的扩散和收集。内部量子效率和扩散调制传递函数已根据时间进行了计算。仿真表明,它们会随着时间变化直至达到稳态值。当积分时间非常短时,必须基于几个相邻的N / P型光电二极管来估计光电二极管的灵敏度和传感器图像上的对比度,才能考虑到这种发展。

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