Effect of Geometric Parameters of Metallic Nanoprisms on the Plasmonic Resonance Wavelength

IF 0.7 4区 物理与天体物理 Q4 OPTICS Journal of Russian Laser Research Pub Date : 2023-11-24 DOI:10.1007/s10946-023-10171-5
Alexey D. Kondorskiy, Arseniy V. Mekshun
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Abstract

We study the effect of geometric dimensions on the optical properties of equilateral triangular gold and silver nanoprisms with rounded corners. An analytical expression for calculating the spectral characteristics of the main longitudinal plasmonic resonance of such nanoprisms is obtained. As variables, the expression includes the nanoprism dimensions, its composition, and the permittivity of the surrounding environment. Our results demonstrate that the extinction cross sections can be adequately described by this expression for nanoprisms with edge lengths up to a few hundred nanometers. We show that the scattering of free electrons from the metal/environment interface in metallic nanoprisms can be described with the help of the size-dependent dielectric function. Using a simple relation, we evaluate the necessary effective size parameter, which allows one to achieve a good agreement with experimental data. The results obtained are of interest for solving a number of fundamental problems in nanophotonics and nanoplasmonics, as well as for applications in the development of next-generation optoelectronic devices.

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金属纳米棱镜几何参数对等离子共振波长的影响
研究了几何尺寸对等边三角形圆角金、银纳米棱镜光学性能的影响。得到了计算这类纳米棱镜主纵向等离子体共振光谱特性的解析表达式。作为变量,表达式包括纳米棱镜尺寸,其组成和周围环境的介电常数。我们的结果表明,对于边缘长度达几百纳米的纳米棱镜,该表达式可以充分描述消光截面。我们证明了金属纳米棱镜中金属/环境界面的自由电子散射可以用尺寸相关介电函数来描述。利用一个简单的关系式,我们计算了必要的有效尺寸参数,使其与实验数据吻合得很好。所获得的结果对于解决纳米光子学和纳米等离子体学中的许多基本问题以及下一代光电器件的开发应用具有重要意义。
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来源期刊
CiteScore
1.50
自引率
22.20%
发文量
73
审稿时长
2 months
期刊介绍: The journal publishes original, high-quality articles that follow new developments in all areas of laser research, including: laser physics; laser interaction with matter; properties of laser beams; laser thermonuclear fusion; laser chemistry; quantum and nonlinear optics; optoelectronics; solid state, gas, liquid, chemical, and semiconductor lasers.
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