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Efficient broadband energy detection from the visible to near-infrared using a plasmon FET

机译:高效使用等离子体FET从可见光近红外线检测

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Plasmon based field effect transistors (FETs) can be used to convert energy induced by incident optical radiation to electrical energy. Plasmonic FETs can efficiently detect incident light and amplify it by coupling to resonant plasmonic modes thus improving selectivity and signal to noise ratio. The spectral responses can be tailored both through optimization of nanostructure geometry as well as constitutive materials. In this paper, we studied various plasmonic nanostructures using gold for a wideband spectral response from visible to near-infrared. We show, using empirical data and simulation results, that detection loss exponentially increases as the volume of metal nanostructure increases and also a limited spectral response is possible using gold nanostructures in a plasmon to electric conversion device. Finally, we demonstrate a plasmon FET that offers a broadband spectral response from visible to telecommunication wavelengths.
机译:基于等离子体的场效应晶体管(FET)可用于将由入射光学辐射引起的能量转换为电能。 等离子体FET可以有效地检测入射光并通过耦合到谐振等离子体模式来扩增它,从而提高选择性和信噪比。 通过优化纳米结构几何形状以及组成型材料,可以根据纳米结构和组成材料来定制光谱响应。 在本文中,我们研究了使用Gold的各种等离子体纳米结构,用于近红外线的宽带光谱反应。 我们以经验数据和仿真结果显示,随着金属纳米结构的体积增加并且使用等离子体中的金纳米结构来呈指数增加的检测损失随着金属纳米结构的增加而增加。 最后,我们展示了一种从电信波长可见的宽带光谱响应的等离子体FET。

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