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Low-Dimensional Materials and State-of-the-Art Architectures for Infrared Photodetection

机译:用于红外线光电检修的低维材料和最先进的架构

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摘要

Infrared photodetectors are gaining remarkable interest due to their widespread civil and military applications. Low-dimensional materials such as quantum dots, nanowires, and two-dimensional nanolayers are extensively employed for detecting ultraviolet to infrared lights. Moreover, in conjunction with plasmonic nanostructures and plasmonic waveguides, they exhibit appealing performance for practical applications, including sub-wavelength photon confinement, high response time, and functionalities. In this review, we have discussed recent advances and challenges in the prospective infrared photodetectors fabricated by low-dimensional nanostructured materials. In general, this review systematically summarizes the state-of-the-art device architectures, major developments, and future trends in infrared photodetection.
机译:由于其广泛的民用和军事应用,红外光电探测器正在获得显着的利益。诸如量子点,纳米线和二维纳米纳米之类的低维材料被广泛用于检测紫外线到红外灯。此外,与等离子体纳米结构和等离子体波导相结合,它们表现出对实际应用的吸引力,包括子波长光子限制,高响应时间和功能。在本次审查中,我们已经讨论了由低维纳米结构材料制造的前瞻性红外光电探测器的最近进步和挑战。一般而言,这篇审查系统地总结了现有的设备架构,主要的发展和未来趋势在红外光电检修中。

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