Tailoring terahertz surface plasmon resonances through near-field coupling in multiple holes-based arrays

Q3 Physics and Astronomy Results in Optics Pub Date : 2024-04-08 DOI:10.1016/j.rio.2024.100678
Vaishnavi Sajeev, Nityananda Acharyya, Soumyajyoti Mallick, Dibakar Roy Chowdhury
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Abstract

The phenomenon of extraordinary transmission (EOT) through perforated metal sheets (hole arrays) has been an interesting field of research since its discovery due to its potential applications. In this paper, we focus on the excitation of multiple surface plasmon resonance (SPR) modes in a complex rectangular hole array-based unit cell. This unit cell configuration consists of two horizontally placed holes with a vertical hole placed between them in a near-field electromagnetic coupling regime. We demonstrate, tailoring the SPR resonances along with the Q factor by altering the relative positions among the rectangular holes. Generally, when the excitation field is applied along the longer side of the rectangular hole, no surface plasmon resonance (SPR) is observed. However, in this work, we have shown excitation of SPR modes through near-field interactions even in the case of probe field being applied along the longer side. In such cases, significant modifications in resonance Q-factors are observed which is attributed to near-field interactions among the rectangular holes. Furthermore, our investigation explores the hybridization of (1,0) peaks within the multiple-hole arrays due to the different effective periodicities. Our work also demonstrates a route to excite and tune SPR modes without altering the unit cell periodicity, hence can provide an additional degree of freedom in SPR excitations.

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通过多孔阵列中的近场耦合调整太赫兹表面等离子体共振
穿孔金属片(孔阵)的超常传输(EOT)现象因其潜在的应用价值,自发现以来一直是一个有趣的研究领域。在本文中,我们重点研究了在基于复杂矩形孔阵列的单元池中激发多个表面等离子体共振 (SPR) 模式的问题。这种单元池配置由两个水平放置的孔和一个垂直放置的孔组成,它们之间处于近场电磁耦合状态。我们演示了通过改变矩形孔之间的相对位置来定制 SPR 共振和 Q 因子。一般来说,当激励场沿矩形孔的长边施加时,不会观察到表面等离子体共振(SPR)。然而,在这项研究中,我们发现即使探针场沿长边施加,也能通过近场相互作用激发 SPR 模式。在这种情况下,我们观察到共振 Q 因子发生了显著变化,这归因于矩形孔之间的近场相互作用。此外,我们的研究还探讨了多孔阵列中由于有效周期性不同而产生的(1,0)峰杂化现象。我们的研究还展示了在不改变单元周期的情况下激发和调整 SPR 模式的途径,从而为 SPR 激发提供了额外的自由度。
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来源期刊
Results in Optics
Results in Optics Physics and Astronomy-Atomic and Molecular Physics, and Optics
CiteScore
2.50
自引率
0.00%
发文量
115
审稿时长
71 days
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