首页> 外国专利> OPTICALLY CONTROLLED ELECTRICAL-SWITCH DEVICE BASED UPON CARBON NANOTUBES AND ELECTRICAL-SWITCH SYSTEM USING THE SWITCH DEVICE

OPTICALLY CONTROLLED ELECTRICAL-SWITCH DEVICE BASED UPON CARBON NANOTUBES AND ELECTRICAL-SWITCH SYSTEM USING THE SWITCH DEVICE

机译:基于碳纳米管的光控电开关装置及使用该开关装置的电开关系统

摘要

Described herein is an optically controlled electrical-switch device which includes a first current-conduction terminal and a second current-conduction terminal, and a carbon nanotube connected between the first and the second current-conduction terminals, the carbon nanotube being designed to be impinged upon by electromagnetic radiation and having an electrical conductivity that can be varied by varying the polarization of the electromagnetic radiation incident thereon. In particular, the carbon nanotube may for example, in given conditions of electrical biasing, present a high electrical conductivity when it is impinged upon by electromagnetic radiation having a given wavelength and a polarization substantially parallel to the axis of the carbon nanotube itself, and a reduced electrical conductivity when it is impinged upon by electromagnetic radiation having a given wavelength and a polarization substantially orthogonal to the axis of the carbon nanotube itself.
机译:在此描述的是一种光控电开关装置,其包括第一电流传导端子和第二电流传导端子,以及连接在第一和第二电流传导端子之间的碳纳米管,该碳纳米管被设计为被撞击。可以通过改变电磁辐射的入射角来改变其电导率。特别地,例如,在给定的电偏压条件下,当碳纳米管受到具有给定波长和基本上平行于碳纳米管本身的轴的极化的电磁辐射时,会呈现出高电导率。当具有给定波长和基本垂直于碳纳米管本身的轴线的极化的电磁辐射撞击该导电层时,导电性降低。

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