Vacuum-ultraviolet (λ < 200 nm) photodetector array

IF 15.7 Q1 OPTICS PhotoniX Pub Date : 2024-03-13 DOI:10.1186/s43074-024-00120-z
Siqi Zhu, Zhuogeng Lin, Zhao Wang, Lemin Jia, Naiji Zhang, Wei Zheng
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Abstract

The vacuum-ultraviolet (VUV, 10–200 nm) imaging photodetector (PD) based on the wide bandgap semiconductor (WBGS) can realize a more detailed observation of solar storms than the silicon ones. Here, an 8 × 8 VUV PD array based on the semiconductor AlN with an ultra-wide bandgap is presented, exhibiting the shortest cutoff wavelength (203 nm) reported so far. The PD array with a Pt/AlN/SiC/Ti/Au photovoltaic structure shows an excellent selective response to VUV light, an extremely low dark current density of 2.85 × 10–11 A·cm−2@ -2 V, a responsivity of 0.054 A·W−1@ 0 V and an ultra-short rise time of 13 ns. Also, the clear boundaries and an obvious contrast between light and dark of the VUV image displayed in the imaging measurement indicate the good imaging ability of this PD array, which can be used for the imaging application with high signal-to-noise ratio and high response speed. These results provide rich experience for the development of VUV imaging PDs based on WBGSs both in their fabrication and the practical applications in VUV detection.

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真空-紫外线(λ < 200 纳米)光电探测器阵列
基于宽带隙半导体(WBGS)的真空-紫外(VUV,10-200 nm)成像光电探测器(PD)可以实现比硅光电探测器更细致的太阳风暴观测。本文介绍了一种基于超宽带隙半导体 AlN 的 8 × 8 紫外光光电探测器阵列,它展示了迄今为止所报道的最短截止波长(203 nm)。采用 Pt/AlN/SiC/Ti/Au 光伏结构的 PD 阵列对紫外光具有极佳的选择性响应,暗电流密度极低(2.85 × 10-11 A-cm-2@-2V),响应率为 0.054 A-W-1@0 V,上升时间超短(13 ns)。同时,成像测量中显示的紫外图像边界清晰、明暗对比明显,表明该光致发光阵列具有良好的成像能力,可用于高信噪比和高响应速度的成像应用。这些结果为基于 WBGS 的紫外成像光致发光器件的开发提供了丰富的经验,无论是在其制造方面还是在紫外检测的实际应用方面。
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25.70
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审稿时长
13 weeks
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