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Single-crystalline aluminum film for ultraviolet plasmonic nanolasers

机译:紫外等离子体纳米激光单晶铝膜

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摘要

Significant advances have been made in the development of plasmonic devices in the past decade. Plasmonic nanolasers, which display interesting properties, have come to play an important role in biomedicine, chemical sensors, information technology, and optical integrated circuits. However, nanoscale plasmonic devices, particularly those operating in the ultraviolet regime, are extremely sensitive to the metal and interface quality. Thus, these factors have a significant bearing on the development of ultraviolet plasmonic devices. Here, by addressing these material-related issues, we demonstrate a low-threshold, high-characteristic-temperature metal-oxide-semiconductor ZnO nanolaser that operates at room temperature. The template for the ZnO nanowires consists of a flat single-crystalline Al film grown by molecular beam epitaxy and an ultrasmooth Al2O3 spacer layer synthesized by atomic layer deposition. By effectively reducing the surface plasmon scattering and metal intrinsic absorption losses, the high-quality metal film and the sharp interfaces formed between the layers boost the device performance. This work should pave the way for the use of ultraviolet plasmonic nanolasers and related devices in a wider range of applications.
机译:在过去的十年中,等离子体设备的开发取得了重大进展。显示出有趣特性的等离子纳米激光在生物医学,化学传感器,信息技术和光学集成电路中起着重要的作用。但是,纳米级等离激元器件,尤其是在紫外线下工作的等离子激元器件,对金属和界面质量极为敏感。因此,这些因素对紫外线等离子体装置的发展具有重要影响。在这里,通过解决这些与材料有关的问题,我们展示了一种在室温下运行的低阈值,高特征温度的金属氧化物半导体ZnO纳米激光器。 ZnO纳米线的模板由通过分子束外延生长的平坦单晶Al膜和通过原子层沉积合成的超光滑Al2O3间隔层组成。通过有效减少表面等离激元散射和金属固有吸收损失,高质量的金属膜和层之间形成的尖锐界面可提高器件性能。这项工作应为在更广泛的应用中使用紫外线等离子体纳米激光器和相关设备铺平道路。

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