首页> 外文期刊>The European physical journal, B. Condensed matter physics >Topological plasmons in dimerized chains of nanoparticles: robustness against long-range quasistatic interactions and retardation effects
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Topological plasmons in dimerized chains of nanoparticles: robustness against long-range quasistatic interactions and retardation effects

机译:纳米颗粒二聚体链中的拓扑等离子体:对远程Quasistatic相互作用和延迟效应的鲁棒性

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摘要

We present a simple model of collective plasmons in a dimerized chain of spherical metallic nanoparticles, an elementary example of a topologically nontrivial nanoplasmonic system. Taking into account long-range quasistatic dipolar interactions throughout the chain, we provide an exact analytical expression for the full quasistatic bandstructure of the collective plasmons. An explicit calculation of the Zak phase proves the robustness of the topological physics of the system against the inclusion of long-range Coulomb interactions, despite the broken chiral symmetry. Using an open quantum systems approach, which includes retardation through the plasmon-photon coupling, we go on to analytically evaluate the resulting radiative frequency shifts of the plasmonic spectrum. The bright plasmonic bands experience size-dependent radiative shifts, while the dark bands are essentially unaffected by the light-matter coupling. Notably, the upper transverse-polarized band presents a logarithmic singularity where the quasistatic spectrum intersects the light cone. At wavevectors away from this intersection and for subwavelength nanoparticles, the plasmon-photon coupling only leads to a quantitative reconstruction of the bandstructure and the topologically-protected states at the edge of the first Brillouin zone are essentially unaffected.
机译:我们在球形金属纳米粒子二聚化链中提出了一种集体等离子体的简单模型,是拓扑非血管纳米型系统的基本实例。考虑到整个链中的远程Quasistatic Dipolar相互作用,我们为集体等离子体的全仲谱结构提供了精确的分析表达。尽管手性对称性破裂,但Zak阶段的明确计算证明了系统对包含远程库仑相互作用的拓扑物理学的鲁棒性。使用开放量子系统方法,包括通过等离子体 - 光子耦合延迟,我们继续分析到所得到的等离子体谱的辐射频率偏移。明亮的等离子体频段经历尺寸依赖性辐射偏移,而暗带基本上不受浅型耦合的影响。值得注意的是,上横向极化带呈现对数奇异性,其中Quasistatic光谱与光锥相交。在远离该交叉点的波长和亚壳纳米颗粒处,等离子体 - 光子耦合仅导致带状结构的定量重建,并且第一布里渊区边缘处的拓扑保护状态基本上不受影响。

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