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Thermoelectric detection and imaging of propagating graphene plasmons

机译:石墨烯等离子体激元的热电检测和成像

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摘要

Controlling, detecting and generating propagating plasmons by all-electrical means is at the heart of on-chip nano-optical processing. Graphene carries long-lived plasmons that are extremely confined and controllable by electrostatic fields; however, electrical detection of propagating plasmons in graphene has not yet been realized. Here, we present an all-graphene mid-infrared plasmon detector operating at room temperature, where a single graphene sheet serves simultaneously as the plasmonic medium and detector. Rather than achieving detection via added optoelectronic materials, as is typically done in other plasmonic systems, our device converts the natural decay product of the plasmon-electronic heat-directly into a voltage through the thermoelectric effect. We employ two local gates to fully tune the thermoelectric and plasmonic behaviour of the graphene. High-resolution real-space photocurrent maps are used to investigate the plasmon propagation and interference, decay, thermal diffusion, and thermoelectric generation.
机译:通过全电方式控制,检测和生成传播的等离激元是片上纳米光学处理的核心。石墨烯带有长寿命的等离激元,这些等离激元受到静电场的严格限制和控制。然而,尚未实现电学检测石墨烯中的扩散等离子体激元。在这里,我们介绍了一种在室温下运行的全石墨烯中红外等离子体检测器,其中单个石墨烯片同时用作等离子体介质和检测器。我们的设备没有像其他等离子系统中通常通过添加的光电材料那样实现检测,而是通过热电效应将等离子电子热的自然衰减产物直接转换为电压。我们使用两个局部门来完全调整石墨烯的热电和等离子体行为。高分辨率的真实空间光电流图用于研究等离激元的传播和干扰,衰减,热扩散和热电发电。

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  • 来源
    《Nature Materials》 |2017年第2期|204-207|共4页
  • 作者单位

    ICFO-Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, 08860 Castelldefels (Barcelona), Spain;

    Department of Mechanical Engineering, Columbia University, New York, New York 10027, USA;

    ICFO-Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, 08860 Castelldefels (Barcelona), Spain;

    Department of Mechanical Engineering, Columbia University, New York, New York 10027, USA;

    CIC nanoGUNE, E-20018 Donostia-San Sebastian, Spain,Departamento de Fisica, Universidad de Oviedo, Oviedo 33007, Spain;

    National Institute for Materials Science, 1-1 Namiki, Tsukuba 305-0044, Japan;

    National Institute for Materials Science, 1-1 Namiki, Tsukuba 305-0044, Japan;

    Department of Mechanical Engineering, Columbia University, New York, New York 10027, USA;

    CIC nanoGUNE and UPV/EHU, E-20018 Donostia-San Sebastian, Spain,IKERBASQUE, Basque Foundation for Science, 48011 Bilbao, Spain;

    ICFO-Institut de Ciencies Fotoniques, The Barcelona Institute of Science and Technology, 08860 Castelldefels (Barcelona), Spain,ICREA-Institucio Catalana de Recerca i Estudis Avancats, Barcelona 08010, Spain;

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