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Nano Antenna Array for Terahertz Detection

机译:用于太赫兹检测的纳米天线阵列

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摘要

Infrared (IR) detectors have been fabricated consisting of antenna-coupled metal–oxide–metal diodes (ACMOMDs). These detectors were defined using electron beam lithography with shadow evaporation metal deposition. They are designed to be sensitive to the IR range and work at room temperature without cooling or biasing. In order to achieve large arrays of ACMOMDs, nanotransfer printing have been used to cover a large area with metal–oxide–metal (MOM) diodes and with antenna structures. The printed antenna structures consist of gold and aluminum and exhibit a low electrical resistivity. A large area array of MOM tunneling diodes with an ultrathin dielectric (${sim}$ 3.6-nm aluminum oxide) has also been fabricated via the transfer-printing process. The MOM diodes exhibit excellent tunneling characteristics. Both direct and Fowler–Nordheim tunneling has been observed over eight orders of magnitude in current density. Static device parameters have been extracted via kinetic Monte Carlo simulations and have confirmed the existence of a dipole layer at the aluminum/aluminum oxide interface of the printed tunneling diodes. The mechanical yield of the transfer-printing process for the MOM tunneling diodes is almost a 100%, confirming that transfer printing is suitable for large area effective fabrication of these quantum devices.
机译:红外(IR)检测器由天线耦合的金属-氧化物-金属二极管(ACMOMD)制成。这些检测器是使用电子束光刻技术和阴影蒸发金属沉积法定义的。它们被设计为对红外范围敏感,并且可以在室温下工作而不会冷却或偏置。为了实现ACMOMD的大型阵列,纳米转移印刷已被用于使用金属氧化物金属(MOM)二极管和天线结构覆盖大面积区域。印刷天线结构由金和铝组成,并且电阻率低。具有超薄介电层( $ {sim} $ 3.6纳米氧化铝的MOM隧穿二极管的大面积阵列也具有通过转移印刷工艺制成。 MOM二极管具有出色的隧穿特性。在电流密度的八个数量级上都观察到了直接隧穿和Fowler-Nordheim隧穿。静态器件参数已通过动力学蒙特卡洛模拟提取,并已确认印刷隧穿二极管的铝/氧化铝界面处存在偶极层。 MOM隧穿二极管的转移印刷工艺的机械产率几乎为100%,这证实了转移印刷适合于大面积有效地制造这些量子器件。

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