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First fully integrated 2-D array of single-photon detectors in standard CMOS technology

机译:采用标准CMOS技术的首个完全集成的二维单光子探测器二维阵列

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A two-dimensional (2-D) array (4 by 8) of single-photon avalanche diodes integrated in an industrial complementary metal-oxide-semiconductor (CMOS) process is presented. Each pixel combines a photodiode biased above its breakdown voltage in the so-called Geiger mode, a quenching resistor, and a simple comparator. The pitch between the pixels is 75 /spl mu/m and the diameter of each pixel is 6.4 /spl mu/m. The full integration allows reducing the number of charge carriers in a Geiger pulse. The electroluminescence responsible for optical crosstalks between pixels is then reduced leading to a negligible optical crosstalk probability. Thanks to the cleanness of the fabrication process, no afterpulsing effects are noticed. At room temperature, most of the pixels exhibit a dark-count rate of about 50 Hz. The detection probability is almost identical for all 32 pixels of the array with relative variation in the range of a few percents. This letter demonstrates the feasibility of an array of single-photon detectors sensitive in the visible part of the spectrum. Besides low production costs and compactness, an undeniable benefit lies in the potential to easily modify the design to fit a specific application. Furthermore, the CMOS integration opens the way to on-chip data processing.
机译:提出了在工业互补金属氧化物半导体(CMOS)工艺中集成的单光子雪崩二极管的二维(2-D)阵列(4×8)。每个像素都包含一个在所谓的盖革模式下偏置在其击穿电压之上的光电二极管,一个猝灭电阻器和一个简单的比较器。像素之间的间距为75 / spl mu / m,每个像素的直径为6.4 / spl mu / m。完全集成可以减少盖革脉冲中载流子的数量。然后减少了引起像素之​​间的光学串扰的电致发光,从而导致可忽略的光学串扰概率。由于制造过程的清洁性,没有发现余脉冲效应。在室温下,大多数像素的暗计数率约为50 Hz。对于阵列的所有32个像素,检测概率几乎相同,相对变化范围为百分之几。这封信证明了在光谱的可见光部分敏感的单光子探测器阵列的可行性。除了较低的生产成本和紧凑性外,不可否认的优势还在于可以轻松修改设计以适合特定应用的潜力。此外,CMOS集成为片上数据处理开辟了道路。

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