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首页> 外文期刊>Advanced Optical Materials >Ultrafast Nanoscale Gradient Junction Self-Powered Schottky Photodetectors for Vision-Like Object Classification
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Ultrafast Nanoscale Gradient Junction Self-Powered Schottky Photodetectors for Vision-Like Object Classification

机译:超快纳米级梯度结自动肖特基光电探测器,用于视觉般的物体分类

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摘要

Emulating human vision for pattern classification is essential in intelligent machines, including pilotless vehicles and humanoid robots. Traditionally, analog visual information is captured by photosensors, which are sequentially classified using a physically separated algorithm-based unit, such as a computer. Among such units, a self-powered photodetector with a quick information sensing feature can be utilized for an unprecedented pattern classification; however, designing an ultrafast photodetector while maintaining a high sensitivity is critical. Herein, an alternative photovoltaic-effect-based, highly sensitive, self-powered, broadband, ultrafast gradient junction nanoscale Schottky photodetector is introduced, that can sense input optical information without latency. Importantly, the proposed device can sense optical input within a approximate to 40 ns duration and demonstrate a 3-dB bandwidth wider than 0.5 MHz, providing a throughput of 10 million bits per second. Photoconductive atomic force microscopy and Kelvin probe force microscopy independently revealed the photodynamic characteristic at a nanometer (approximate to 35 nm) scale. Further, an array that can classify nontrivial patterns even with noisy inputs is developed. A unique solution to achieve an ultrafast photo response in self-powered mode and classify the input patterns is provided. The proposed approach can be extended to several other artificial neural sensors, such as tactile, audio, and thermal sensors.
机译:模拟人类视力的模式分类对于智能机器至关重要,包括导航车辆和人形机器人。传统上,模拟视觉信息由光电传感器捕获,它们使用诸如计算机的基于物理分离的算法的单位顺序分类。在这些单元中,可以利用具有快速信息感测特征的自动光电探测器用于前所未有的模式分类;然而,在保持高灵敏度的同时设计超快光电探测器是至关重要的。这里,引入了一种基于光伏效应的,高度敏感的,自动的,宽带,超氮梯度结纳米尺度肖特基光电探测器,其可以在没有延迟的情况下感测输入光学信息。重要的是,所提出的装置可以在近似40ns持续时间内感测光学输入,并演示3dB带宽宽于0.5MHz,提供每秒1000万位的吞吐量。光电导原子力显微镜和开尔文探针力显微镜独立地揭示了纳米的光动力学特性(近似为35nm)。此外,开发了一种可以对即使具有噪声输入来分类非活动模式的阵列。提供了在自供电模式下实现超快照片响应的独特解决方案,并进行分类输入模式。所提出的方法可以扩展到几个其他人工神经传感器,例如触觉,音频和热传感器。

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