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Significant field enhancements in an individual silver nanoparticle near a substrate covered with a thin gain film

机译:一个人的重要场增强银纳米粒子在衬底上覆盖着一个获得薄膜

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In this paper, we propose a method to significantly enhance the local-field of a gap plasmonic system by placing a metallic nanoparticle in close proximity to a substrate covered with a thin film using a gain material (~100 nm thickness). Compared with a conventional dielectric substrate, the thin gain film can contribute to several, or dozens, of times more intense local electric fields in the gap between the particle and the substrate. We use the finite difference time domain method to numerically analyze the influences of the gain coefficient of the film and of the other parameters on the field enhancement. The numerical results show that there is an optimal refractive index of the gain film that enables us to achieve a maximal field enhancement for a given NP radius. Moreover, the optimal refractive index of the gain film can be incorporated into any available materials using metal nanoparticles with an appropriate radius.
机译:在本文中,我们提出一个方法显著提高了局部场的差距电浆系统通过将金属纳米粒子在靠近衬底使用增益材料覆盖着一层薄膜(~ 100纳米的厚度)。介质衬底,获得薄膜导致几个或几十倍强烈的局部电场之间的差距粒子和基体。不同时域数值方法分析的增益系数的影响的电影和其他参数增强。有一个最优的折射率电影使我们能够达到最大的领域增强对于一个给定的NP半径。最佳折射率可以获得的电影纳入任何可用的材料使用金属纳米粒子与适当的半径。

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