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Method and Apparatus for High Resolution Photon Detection based on Extraordinary Optoconductance (EOC) Effects

机译:基于超光电导效应的高分辨率光子检测方法及装置

摘要

The inventors disclose a new high performance optical sensor, preferably of nanoscale dimensions, that functions at room temperature based on an extraordinary optoconductance (EOC) phenomenon, and preferably an inverse EOC (I-EOC) phenomenon, in a metal-semiconductor hybrid (MSH) structure having a semiconductor/metal interface. Such a design shows efficient photon sensing not exhibited by bare semiconductors. In experimentation with an exemplary embodiment, ultrahigh spatial resolution 4-point optoconductance measurements using Helium-Neon laser radiation reveal a strikingly large optoconductance property, an observed maximum measurement of 9460% EOC, for a 250 nm device. Such an exemplary EOC device also demonstrates specific detectivity higher than 5.06×1011 cm√Hz/W for 632 nm illumination and a high dynamic response of 40 dB making such sensors technologically competitive for a wide range of practical applications.
机译:发明人公开了一种新型的高性能光学传感器,优选具有纳米级尺寸,其在室温下基于金属-半导体混合体(MSH)中的异常光电导(EOC)现象,并且优选地基于反EOC(I-EOC)现象起作用。具有半导体/金属界面的结构。这样的设计显示出有效的光子感测是裸露的半导体所没有的。在一个示例性实施例的实验中,使用Heel-Neon激光辐射进行的超高空间分辨率4点光电导测量显示出惊人的大光电导特性,对于250 nm器件,观察到的最大测量值为9460%EOC。这样的示例性EOC器件还显示出在632 nm照明下的比探测率高于5.06×10 11 cm√Hz/ W和40 dB的高动态响应,从而使此类传感器在广泛的实际应用中具有技术竞争力应用程序。

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