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Nanoresonant signal boosters for carbon nanotube based infrared detectors

机译:纳米共振信号增强器,用于基于碳纳米管的红外探测器

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摘要

We report the development of a sensitive carbon nanotube (CNT) infrared detector whose signals are boosted by nanoantenna-like features. This assembly is fabricated using nanoassembly of CNTs and a standard photolithographic process, together with nanoantenna-like features that are designed to create a resonance structure necessary to boost the electric field intensity at the CNT sensor. A novel approach is employed to find the near-field effect of the antenna. As a result, these effects are verified and demonstrated experimentally in this paper. The first experimental demonstration of a practical infrared device with nanoantenna-like structures is reported; it shows that the photocurrent is increased by an order of magnitude. The proposed fabrication and design process enables a ready integration of resonance structures into the manufacture of infrared devices, and opens the possibility of developing high fidelity infrared sensors with wide sensing range.
机译:我们报道了一种敏感的碳纳米管(CNT)红外探测器的发展,该探测器的信号受类似纳米天线的功能增强。该组件是使用CNT的纳米组件和标准光刻工艺以及类似纳米天线的特征制造的,这些特征旨在产生增强CNT传感器电场强度所必需的共振结构。采用一种新颖的方法来发现天线的近场效应。结果,这些效果在本文中得到了验证和实验证明。报道了具有纳米天线状结构的实用红外设备的首次实验演示;它表明光电流增加了一个数量级。所提出的制造和设计过程使得能够将谐振结构容易地集成到红外设备的制造中,并为开发具有宽广感测范围的高保真度红外传感器提供了可能性。

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