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采用电子束操控的可重构纳米天线。

Reconfigurable nanoantennas using electron-beam manipulation.

机构信息

1] Department of Electrical and Computer Engineering, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA [2].

Department of Electrical and Computer Engineering, University of Illinois at Urbana-Champaign, Urbana, Illinois 61801, USA.

出版信息

Nat Commun. 2014 Jul 14;5:4427. doi: 10.1038/ncomms5427.

Abstract

Plasmonic nanoantennas have been of increasing interest due to their ability to confine and enhance electric fields in deep sub-wavelength volumes, leading to large near-field optical forces and high refractive index sensitivity. Recently, to enhance the response for sensor applications, metal nanoantennas have been fabricated on pillars. An overlooked consequence of this elevated geometry is the introduction of the mechanical properties, for example, stiffness, as a tunable degree of freedom. Here we demonstrate pillar-bowtie nanoantenna arrays, fabricated on optically transparent SiO2, as a candidate system that couples intrinsic mechanical and electromagnetic degrees of freedom via gradient forces. We show that using a standard scanning electron microscope, individual nanoantenna gap sizes can be controllably tuned down to 5 nm, a factor of ~4 × smaller than what is currently achievable using conventional electron-beam lithography. This approach opens new avenues for fabricating reconfigurable nanoantennas that can inform exciting photonic applications.

摘要

由于能够在深亚波长体积中限制和增强电场,等离子体纳米天线引起了越来越多的关注,从而产生了大的近场光学力和高折射率灵敏度。最近,为了增强传感器应用的响应,金属纳米天线已被制造在立柱上。这种升高的几何形状被忽视的后果是引入了机械性能,例如刚度,作为可调谐自由度。在这里,我们展示了在光学透明的 SiO2 上制造的柱状蝶形纳米天线阵列,作为通过梯度力耦合固有机械和电磁自由度的候选系统。我们表明,使用标准的扫描电子显微镜,可以将单个纳米天线间隙尺寸可控地调谐至 5nm,比使用传统电子束光刻可实现的尺寸小约 4 倍。这种方法为制造可重构纳米天线开辟了新途径,这些天线可以为令人兴奋的光子应用提供信息。

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