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基于等离子体共振可调超表面的具有高调制指数的高速幅度调制器。

High-speed amplitude modulator with a high modulation index based on a plasmonic resonant tunable metasurface.

作者信息

Bibbò Luigi, Liu Qiang, Khan Karim, Yadav Ashish, Elshahat Sayed, Deng Zi-Lan, Ouyang Zhengbiao

出版信息

Appl Opt. 2019 Apr 1;58(10):2687-2694. doi: 10.1364/AO.58.002687.

Abstract

High-speed optical amplitude modulation is important for optical communication systems and sensors. Moreover, nano-optical modulators are important for developing optical-communication-aided high-speed parallel-operation processors and micro-biomedical sensors for inside-blood-capillary examinations or microsurgery operations. In this paper, we have designed a plasmonic resonant tunable metasurface with barium titanate (BTO) as a nanoscale optical modulator with a high modulation index and high speed. The BTO operated well in the VIS and near-IR ranges, enabling tunable optical devices with zero dispersion and high speed. The results obtained by rigorous finite-element method simulations have shown that the hypothesized device has good potential for fast modulation in related applications, e.g., modulators in nano-optical systems, nano-optical switches and nanosensors.

摘要

高速光幅度调制对于光通信系统和传感器至关重要。此外,纳米光调制器对于开发光通信辅助的高速并行运算处理器以及用于毛细血管内部检查或显微外科手术的微型生物医学传感器也很重要。在本文中,我们设计了一种以钛酸钡(BTO)作为具有高调制指数和高速的纳米级光调制器的等离子体共振可调超表面。BTO在可见光和近红外范围内表现良好,能够实现具有零色散和高速的可调光学器件。通过严格的有限元方法模拟获得的结果表明,所设想的器件在相关应用中具有快速调制的良好潜力,例如纳米光学系统中的调制器、纳米光开关和纳米传感器。

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