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Titanium nitride as a plasmonic material for visible and near-infrared wavelengths

机译:氮化钛作为等离子材料,用于可见光和近红外波长

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The search for alternative plasmonic materials with improved optical properties, easier fabrication and integration capabilities over those of the traditional materials such as silver and gold could ultimately lead to real-life applications for plasmonics and metamaterials. In this work, we show that titanium nitride could perform as an alternative plasmonic material in the visible and near-infrared regions. We demonstrate the excitation of surface-plasmon-polaritons on titanium nitride thin films and discuss the performance of various plasmonic and metamaterial structures with titanium nitride as the plasmonic component. We also show that titanium nitride could provide performance that is comparable to that of gold for plasmonic applications and can significantly outperform gold and silver for transformation-optics and some metamaterial applications in the visible and near-infrared regions.
机译:寻求具有比传统材料(如银和金)更高的光学性能,更容易的制造和集成能力的替代等离激元材料,最终可能导致等离激元和超材料的实际应用。在这项工作中,我们表明氮化钛可以在可见光和近红外区域充当替代的等离子体材料。我们演示了氮化钛薄膜上表面等离激元极化子的激发,并讨论了以氮化钛为等离激元组分的各种等离激元和超材料结构的性能。我们还表明,氮化钛可以提供的性能可与等离子应用中的金相媲美,并且在可见光和近红外区域中的相变光学和某些超材料应用中,其性能大大优于金和银。

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