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A 1024 x 8, 700-ps Time-Gated SPAD Line Sensor for Planetary Surface Exploration With Laser Raman Spectroscopy and LIBS

机译:用于通过激光拉曼光谱和LIBS进行行星表面探测的1024 x 8、700 ps时间门控SPAD线传感器

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摘要

A 1024 8 time-gated, single-photon avalanche diode line sensor is presented for time-resolved laser Raman spectroscopy and laser-induced breakdown spectroscopy. Two different chip geometries were implemented and characterized. A type-I sensor has a maximum photon detection efficiency of 0.3% and median dark count rate of 80 Hz at 3 V of excess bias. A type-II sensor offers a maximum photon detection efficiency of 19.3% and a median dark count rate of 5.7 kHz at 3 V of excess bias. Both chips have 250-ps temporal resolution and fast gating capability, with a minimum gate width of 1.8 ns for type I and 0.7 ns for type II. Raman spectra were successfully observed from natural minerals, such as calcite and willemite. With the use of subnanosecond gating, background fluorescence was significantly reduced.
机译:提出了一种1024 8时间选通的单光子雪崩二极管线传感器,用于时间分辨激光拉曼光谱和激光诱导击穿光谱。实现并表征了两种不同的芯片几何形状。 I型传感器在3 V的过大偏置下具有0.3%的最大光子检测效率和80 Hz的中值暗计数率。 II型传感器在3V的过大偏置下可提供最高19.3%的光子检测效率和5.7kHz的中值暗计数率。两种芯片均具有250ps的时间分辨率和快速选通能力,I型最小栅极宽度为1.8 ns,II型最小宽度为0.7 ns。从方解石和硅铝石等天然矿物中成功观察到拉曼光谱。通过使用亚纳秒级选通,背景荧光显着降低。

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