表面等离子体波干涉下多模纳米狭缝的选择性模态激发。

IF 4.6 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY
Marcos Valero, Luis-Angel Mayoral-Astorga, Howard Northfield, Hyung Woo Choi, Israel De Leon, Mallar Ray, Pierre Berini
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引用次数: 0

摘要

表面等离子体干涉在高精度传感等光学测量中得到了广泛的应用。在本文中,我们介绍了一种表面等离子体干涉仪,该干涉仪具有排列成阵列的潜力,可用于并行复用应用。干涉仪的特点是两个光栅耦合器,激发表面等离子激元(SPP)波沿着金-空气界面传播,然后在金纳米缝处汇聚,在那里它们进行干涉。一个关键的创新在于能够通过改变金纳米狭缝的几何特性来调整干涉模式,从而在纳米狭缝中支持一种、两种或更多的共振模式。我们的实验结果验证了我们的设计方法和建模过程,展示了微调几何参数(如光栅耦合器间距、深度、占空比和纳米狭缝尺寸)以改变透射辐射模式和透射率的潜力。我们演示了一个光栅耦合器的能力,以诱导聚焦SPP波到任意位置的芯片与会聚高斯光束照射。此外,我们观察到与纳米狭缝的多模态操作有关的远场干涉模式。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Selective modal excitation in a multimode nanoslit by interference of surface plasmon waves.

Interference of surface plasmons has been widely utilized in optical metrology for applications such as high-precision sensing. In this paper, we introduce a surface plasmon interferometer with the potential to be arranged in arrays for parallel multiplexing applications. The interferometer features two grating couplers that excite surface plasmon polariton (SPP) waves traveling along a gold-air interface before converging at a gold nanoslit where they interfere. A key innovation lies in the ability to tune the interference pattern by altering the geometrical properties of the gold nanoslit such that one, two or more resonance modes are supported in the nanoslit. Our experimental results validate the approach of our design and modelling process, demonstrating the potential to fine-tune geometrical parameters such as grating coupler pitch, depth, duty cycle, and nanoslit dimensions to alter the transmitted radiation pattern and the transmittance. We demonstrate the ability of a grating coupler to induce focusing of SPP waves to an arbitrary location on chip by illuminating with a converging Gaussian beam. Additionally, we observed far-field interference patterns linked to the multimodal operation of the nanoslit.

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来源期刊
Nanoscale Advances
Nanoscale Advances Multiple-
CiteScore
8.00
自引率
2.10%
发文量
461
审稿时长
9 weeks
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