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Terahertz detectors and focal plane arrays

机译:太赫兹探测器和焦平面阵列

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Terahertz (THz) technology is one of emerging technologies that will change our life. A lot of attractive applications in security, medicine, biology, astronomy, and non-destructive materials testing have been demonstrated already. However, the realization of THz emitters and receivers is a challenge because the frequencies are too high for conventional electronics and the photon energies are too small for classical optics. As a result, THz radiation is resistant to the techniques commonly employed in these well established neighbouring bands. In the paper, issues associated with the development and exploitation of THz radiation detectors and focal plane arrays are discussed. Historical impressive progress in THz detector sensitivity in a period of more than half century is analyzed. More attention is put on the basic physical phenomena and the recent progress in both direct and heterodyne detectors. After short description of general classification of THz detectors, more details concern Schottky barrier diodes, pair braking detectors, hot electron mixers and field-effect transistor detectors, where links between THz devices and modern technologies such as micromachining are underlined. Also, the operational conditions of THz detectors and their upper performance limits are reviewed. Finally, re,ent advances in novel nanoelectronic materials and technologies are described. It is expected that applications of nanoscale materials and devices will open the door for further performance improvement in THz detectors.
机译:太赫兹(THz)技术是会改变我们生活的新兴技术之一。在安全性,医学,生物学,天文学和非破坏性材料测试中,已经展示了许多吸引人的应用。然而,太赫兹发射器和接收器的实现是一个挑战,因为对于常规电子设备而言,频率太高,而对于经典光学设备而言,光子能量太小。结果,太赫兹辐射可抵抗在这些成熟的相邻频带中普遍采用的技术。在本文中,讨论了与太赫兹辐射探测器和焦平面阵列的开发和利用有关的问题。分析了半个多世纪以来THz检测器灵敏度的历史性惊人进展。直接和外差探测器的基本物理现象和最新进展都得到了更多的关注。在简要描述了太赫兹探测器的一般分类之后,更多细节涉及肖特基势垒二极管,成对制动探测器,热电子混合器和场效应晶体管探测器,其中强调了太赫兹设备与微加工等现代技术之间的联系。此外,还对THz检测器的工作条件及其性能上限进行了审查。最后,描述了新型纳米电子材料和技术的最新进展。预计纳米材料和器件的应用将为进一步提高THz检测器的性能打开大门。

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