Development of Multi-physics Modeling of Plasmonics in the UV Region Using Transition Metals

M. K., M. J. Reddy, K. P. Pradhan, Tejendra Dixit
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引用次数: 1

Abstract

Herein, we report the effect of parametric variations on the plasmonic behavior of the transition metals i.e. Pd, Rh, Cr. UV plasmonics is critical for many applications like bio-molecule detection, surface-enhanced spectroscopies, photothermal therapies, photonic integrated circuits, etc especially in the UV region. Noble metals like Au, Ag, Pt are restricted to the visible region. Only there are very limited candidates for UV plasmonics viz. Al, Pt, etc. In order to explore prominent candidates for the UV region, the plasmonic properties of transition metals like Cr, Rh and Pd have been systematically studied. Rh has been found as a strong contender in the deep UV region. Particle size variation studies suggested that selectivity can be introduced in metals like Rh and Pd. This work will provide new insights in the development of UV plasmonics.
利用过渡金属建立紫外区等离子体多物理场模型的研究进展
在此,我们报告了参数变化对过渡金属(Pd, Rh, Cr)等离子体行为的影响。紫外等离子体对于许多应用至关重要,如生物分子检测,表面增强光谱,光热治疗,光子集成电路等,特别是在紫外区域。贵金属如Au, Ag, Pt都局限于可见光区域。只有非常有限的候选紫外等离子体,如Al, Pt等。为了探索紫外区的突出候选者,系统地研究了Cr、Rh和Pd等过渡金属的等离子体性质。Rh在深紫外区被发现是一个强有力的竞争者。粒度变化研究表明,选择性可以引入金属,如铑和钯。这项工作将为紫外等离子体的发展提供新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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