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Floating field ring technique applied to enhance fill factor of silicon photomultiplier elementary cell

机译:浮田环技术应用于增强硅光电倍增器基本细胞的填充因子

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A silicon photomultiplier (SiPM) is a matrix of Geiger-mode avalanche photodiodes (GM-APDs) connected in parallel. One of the main drawback in the SiPm is the low Photon Detection Efficiency(PDE) also due to the low geometrical fill factor of the microcells array. This paper reports on the analysis and simulation of the single floating field ring technique, applied to the junction termination of the single cell of a Silicon Photomultiplier (SiPm). A floating guard ring is made along the border of the single microcell and it is not connected to the cathodic contact. Even if the ring is not electrically connected to the main junction, it mitigates the variation of the electrical field at the main termination. The effect of the junction-to-ring distance is analytically investigated by using cylindrical coordinates and an optimal distance together with the optimal width is found. Results show that the single floating ring reduces the junction edge electric field by keeping constant the size of the microcell allowing, then, an improvement for the geometrical fill factor. Results are supported by TCAD simulations.
机译:硅光电倍增管(SIPM)是平行连接的Geiger-Mode雪崩光电二极管(GM-APD)的矩阵。由于微小区阵列的低几何填充因子,SIPM中的主要缺点是低光子检测效率(PDE)。本文报告了单浮田环技术的分析和仿真,施加到硅光倍增器(SIPM)的单电池的结终止。沿着单个微荷的边界制成浮动环,并且不连接到阴极接触。即使环形环没有电连接到主结,它也会减轻主终端的电场的变化。通过使用圆柱形坐标和找到与最佳宽度一起的最佳距离来分析连接到环距离的效果。结果表明,单浮环通过保持恒定的微小区的尺寸持续,单浮环减少了结缘电场,然后是几何填充因子的改进。结果支持TCAD模拟。

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