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Electromigrated electrical optical antennas for transducing electrons and photons at the nanoscale

机译:电迁移的电光学天线用于在纳米尺度上转换电子和光子

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摘要

>Background: Electrically controlled optical metal antennas are an emerging class of nanodevices enabling a bilateral transduction between electrons and photons. At the heart of the device is a tunnel junction that may either emit light upon injection of electrons or generate an electrical current when excited by a light wave. The current study explores a technological route for producing these functional units based upon the electromigration of metal constrictions. >Results: We combine multiple nanofabrication steps to realize in-plane tunneling junctions made of two gold electrodes, separated by a sub-nanometer gap acting as the feedgap of an optical antenna. We electrically characterize the transport properties of the junctions in the light of the Fowler–Nordheim representation and the Simmons model for electron tunneling. We demonstrate light emission from the feedgap upon electron injection and show examples of how this nanoscale light source can be coupled to waveguiding structures. >Conclusion: Electromigrated in-plane tunneling optical antennas feature interesting properties with their unique functionality enabling interfacing electrons and photons at the atomic scale and with the same device. This technology may open new routes for device-to-device communication and for interconnecting an electronic control layer to a photonic architecture.
机译:>背景:电控光学金属天线是一类新兴的纳米设备,可实现电子和光子之间的双向传导。该器件的核心是一个隧道结,该隧道结可以在注入电子时发光或在被光波激发时产生电流。当前的研究探索了基于金属缩颈的电迁移来生产这些功能单元的技术路线。 >结果:我们结合了多个纳米制造步骤,以实现由两个金电极制成的面内隧道结,并由一个亚纳米间隙隔开,充当光学天线的馈电间隙。我们根据Fowler-Nordheim表示法和Simmons电子隧穿模型对结的传输性质进行电学表征。我们演示了电子注入时从给能隙发出的光,并展示了这种纳米级光源如何与波导结构耦合的示例。 >结论:电迁移的面内隧穿光天线具有有趣的特性,其独特的功能可以使原子级的电子和光子与同一装置相互连接。这项技术可以为设备间通信以及将电子控制层互连到光子体系结构开辟新的途径。

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