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首页> 外文期刊>Selected Topics in Quantum Electronics, IEEE Journal of >Line Position and Quality Factor of Plasmonic Resonances Beyond the Quasi-Static Limit: A Full-Wave Eigenmode Analysis Route
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Line Position and Quality Factor of Plasmonic Resonances Beyond the Quasi-Static Limit: A Full-Wave Eigenmode Analysis Route

机译:超出准静态极限的等离子体共振线位置和品质因数:全波本征模分析路线

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In this study, we introduce a rigorous full-wave eigenmode analysis technique based on a volumetric method of moments to the optical spectrum. We first apply this technique to a nanorod as an example to illustrate how the real part of the eigenfrequency and the modal quality factor (defined as the ratio of the real part of the eigenfrequency to the imaginary part) together with the eigenmode determine the line position and quality factor of a resonance and the corresponding resonant mode. Then, the eigenfrequencies and eigenmodes of a composite plasmonic nanostructure, a Dolmen, and its two individual constituents, a dimer and a monomer, are extracted. The line position of the Fano dip in Dolmen's spectrum is discussed by examining the relative positions of the eigenfrequencies of the dimer and the monomer in the complex plane. Further, the formation of the Fano dip is reinterpreted as the destructive interference between the nonorthogonal eigenmodes of the whole Dolmen structure. The proposed full-wave modal analysis brings a new perspective on understanding and designing the plasmonic response of nanoantennae beyond the quasi-static limit.
机译:在这项研究中,我们介绍了一种严格的全波本征模分析技术,该技术基于对光谱的矩量法。我们首先将此技术应用到纳米棒上,以举例说明本征频率的实部和模态品质因数(定义为本征频率的实部与虚部的比)以及本征模如何确定线位置谐振的品质因数以及相应的谐振模式。然后,提取复合等离子体纳米结构的特征频率和本征模,Dolmen及其两个单独的成分,即二聚体和单体。通过检查二聚体和单体在复杂平面中的本征频率的相对位置,讨论了多诺门谱中法诺浸入线的位置。此外,Fano倾斜的形成被重新解释为整个Dolmen结构的非正交本征模之间的破坏性干涉。提出的全波模态分析为理解和设计超出准静态极限的纳米天线的等离子体响应带来了新的视角。

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