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Designing Plasmonic Hot Carrier Devices for Uncooled Infrared Photodetection

机译:设计用于非制冷红外光电检测的等离子热载体设备

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Surface plasmon resonance transduces photons into energetically “hot” electrons, which provides new Schottky-based platforms for infrared photodetectors without need for cooling infrastructure. Material design principles towards a multiphysics computation tool are presented where performance is governed by plasmonic activity, density-of-states, and the Schottky barrier.
机译:表面等离子体激元共振将光子转换为能量高的“热”电子,这为红外光电探测器提供了基于肖特基的新平台,而无需冷却基础设施。提出了针对多物理场计算工具的材料设计原理,其中性能由等离子激元活动,状态密度和肖特基势垒控制。

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