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Graphene-protected copper and silver plasmonics.

机译:石墨烯保护的铜和银等离子体。

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摘要

Plasmonics has established itself as a branch of physics which promises to revolutionize data processing, improve photovoltaics, and increase sensitivity of bio-detection. A widespread use of plasmonic devices is notably hindered by high losses and the absence of stable and inexpensive metal films suitable for plasmonic applications. To this end, there has been a continuous search for alternative plasmonic materials that are also compatible with complementary metal oxide semiconductor technology. Here we show that copper and silver protected by graphene are viable candidates. Copper films covered with one to a few graphene layers show excellent plasmonic characteristics. They can be used to fabricate plasmonic devices and survive for at least a year, even in wet and corroding conditions. As a proof of concept, we use the graphene-protected copper to demonstrate dielectric loaded plasmonic waveguides and test sensitivity of surface plasmon resonances. Our results are likely to initiate wide use of graphene-protected plasmonics.
机译:等离子体技术已将自己确立为物理学的一个分支,有望革新数据处理,改善光伏技术并提高生物检测的灵敏度。高损耗以及缺乏适用于等离子体应用的稳定且廉价的金属膜显着阻碍了等离子体设备的广泛使用。为此,一直在寻找也与互补金属氧化物半导体技术兼容的替代等离子体材料。在这里,我们表明受石墨烯保护的铜和银是可行的候选物。覆有一层或几层石墨烯层的铜膜具有出色的等离子体特性。它们可用于制造等离激元器件,即使在潮湿和腐蚀的条件下也可以存活至少一年。作为概念的证明,我们使用受石墨烯保护的铜来演示负载有电介质的等离激元波导并测试表面等离振子共振的灵敏度。我们的结果可能会引发广泛使用石墨烯保护的等离子体。

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