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Vacuum-Ultraviolet Photon Detections

机译:真空紫外光子检测

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摘要

Vacuum-ultraviolet (VUV) photon detection technology is an effective means for the exploration in the field of space science (monitoring the formation and evolution of solar storms), high-energy physics (dark matter detection), large-scale scientific facility (VUV free electron lasers) and electronic industry (high-resolution lithography). The advancement of this technology mainly depends on the performance optimization of VUV photodetectors. In this review, we introduced the research progress on the typical VUV photodetectors based on scintillator, photomultiplier tube, semiconductor, and gas, with their unique advantages and optimal performance indicators in different applications summarized. In particular, during recent years, thanks to the advances in ultra-wide bandgap semiconductors, economical VUV photodetectors with low power consumption and small size have been encouragingly developed. Finally, we pointed out the remaining challenges for each type of VUV detector, with the aim of maximizing the performance in a variety of applications in the future.
机译:真空紫外线(VUV)光子检测技术是在空间科学(监视太阳风暴的形成和演化),高能物理学(暗物质检测),大规模科学设施(VUV)领域进行探索的有效手段自由电子激光器)和电子工业(高分辨率光刻)。该技术的进步主要取决于VUV光电探测器的性能优化。在这篇综述中,我们介绍了基于闪烁体,光电倍增管,半导体和气体的典型VUV光电探测器的研究进展,总结了它们在不同应用中的独特优势和最佳性能指标。特别地,近年来,由于超宽带隙半导体的发展,令人鼓舞地开发了低功耗,小尺寸的经济型VUV光电探测器。最后,我们指出了每种VUV检测器所面临的挑战,以期在未来的各种应用中实现最佳性能。

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