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Suppression of Shot Noise During the Soft Reset by Cascaded Transitions on a Potential Ladder With Single-Carrier Charging Steps

机译:通过具有单载波充电步骤的潜在梯子的级联过渡在软复位期间抑制射击噪声

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A shot noise suppression process of the emission-limited or the "soft" reset in an image sensor is investigated by analytically solving a master (Kolmogorov-Bateman) equation for a continuous-time Markov chain with correlated carrier emission rates. An explicit form of the probability distribution function, the hypoexponential type, is derived. An analytical form of the soft-reset (SR) noise is derived as the second-order moment, that is, variance, of the distribution function. It describes all the main characteristics of the SR noise previously reported; time-dependent shot noise suppression approaching an asymptotic limit of the half amount of noise charges as those of the fast or "hard" reset. The noise suppression mechanism is attributed to cascaded transitions of the storage node potential on a potential ladder giving the variance composed of a uniformly decreasing convergent series. The noise reduction factor is shown to be determined by the ladder spacing of a single-carrier charging potential. From the first-order moment analysis, an average time or lifetime dependence identical to that of the deterministic diode-decay equation is derived. Thus, the SR noise can be characterized by the governing probability law and its moments.
机译:通过分析具有相关载波发射率的连续时间马洛维链的主(Kolmogorov-Bateman)方程来研究图像传感器中的发射限制或“软”复位的射击噪声抑制过程。终止形式的概率分布函数是衍生的低概率分布函数。软复位(SR)噪声的分析形式衍生为分布函数的二阶时刻,即差异。它描述了先前报道的SR噪声的所有主要特征;时间依赖的射击噪声抑制接近半噪声充电的渐近极限作为快速或“硬”复位的噪声电荷的一半。噪声抑制机制归因于潜在梯子上的存储节点电位的级联转变,其呈现由均匀减小的收敛系列组成的方差。噪声降低因子被示出由单载波充电电位的梯形间隔确定。从一阶时刻分析,导出与确定性二极管衰减方程的平均时间或寿命依赖性。因此,SR噪声可以特征在于控制概率法及其时刻。

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