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超亚波长二维等离子体电路。

Ultra-subwavelength two-dimensional plasmonic circuits.

机构信息

School of Engineering and Applied Sciences, Harvard University, 33 Oxford Street, Cambridge, Massachusetts 02138, USA.

出版信息

Nano Lett. 2012 May 9;12(5):2272-7. doi: 10.1021/nl300046g. Epub 2012 Apr 18.

Abstract

We report electronics regime (GHz) two-dimensional (2D) plasmonic circuits, which locally and nonresonantly interface with electronics, and thus offer to electronics the benefits of their ultrasubwavelength confinement, with up to 440,000-fold mode-area reduction. By shaping the geometry of 2D plasmonic media 80 nm beneath an unpatterned metallic gate, plasmons are routed freely into various types of reflections and interferences, leading to a range of plasmonic circuits, e.g., plasmonic crystals and plasmonic-electromagnetic interferometers, offering new avenues for electronics.

摘要

我们报告了电子领域(GHz)二维(2D)等离子体电路,它们可以局部和非共振地与电子相互作用,从而为电子提供超亚波长限制的优势,其模式面积可减少高达 440,000 倍。通过在无图案金属栅极下方 80nm 的二维等离子体介质的几何形状,等离子体可以自由地进入各种类型的反射和干涉,从而形成一系列等离子体电路,例如等离子体晶体和等离子体-电磁干涉仪,为电子学开辟了新的途径。

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