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A Strategic Review on Gallium Oxide Based Deep-Ultraviolet Photodetectors: Recent Progress and Future Prospects

机译:基于氧化镓的深层紫外线光电探测器的战略综述:最近的进展与未来前景

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摘要

With the use of UV-C radiation sterilizers on the rise in the wake of the recent pandemic, it has become imperative to have health safety systems in place to curb the ill-effects on humans. This requires detection systems with suitable spectral response to the "invisible to the naked eye" radiation leaks with utmost sensitivity and swiftness. State of the art deep-UV photodetectors based on the wide bandgap material gallium oxide have achieved responsivities up to few hundred A W-1 while the minimum response time achieved is few hundred nanoseconds. However, due to the trade-off between these two key parameters, the ultimate performance of the photodetectors remains inadequate. The focus here is to give a thorough review of the gallium oxide based photodetectors, their recent progress and future prospects. This review highlights the fundamental physics and the key parameters such as dark current, responsivity, and response time with their dependence on the material properties. Exploration of the reasons behind current scenario in the field of gallium oxide is comprehensively and critically analyzed. The key challenges which limit device performance and inhibit the realization of real-world practical detectors are also described. The lacunae currently plaguing the field is also discussed with possible remedial solutions.
机译:随着近期大流行后的uv-c辐射灭菌器的使用,它已经成为将健康安全系统抑制对人类的不良影响的必要性。这需要检测系统,其具有适当的光谱响应,对“肉眼隐形”辐射的辐射泄漏,最敏感性和迅速。基于宽带隙材料镓氧化物的最新的深度UV光电探测器已经实现了高达几百W-1的响应,而达到的最小响应时间是几百纳秒。然而,由于这两个关键参数之间的权衡,光电探测器的最终性能仍然不足。这里的重点是彻底审查氧化镓基光电探测器,其最近的进步和未来的前景。此综述突出了基本物理和暗电流,响应度和响应时间的关键参数,以及它们对材料属性的依赖性。探索氧化镓领域目前场景的原因是全面的和批判性分析。还描述了限制装置性能和抑制现实世界实际探测器的关键挑战。目前困扰该领域的Lacunae也被讨论了可能的补救解决方案。

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