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Optical properties of symmetry-breaking tetrahedral nanoparticles

机译:光学性质的对称性破缺四面体纳米颗粒

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Spectrally rich but geometrically simple plasmonic metallic nanoparticles are highly favored in nanophotonics. However, they remain elusive owing to the symmetry-induced mode degeneracy and interband transition-induced plasmonic damping. Hence, most nanoparticles exhibit a single major extinction peak originating from the lowest-order dipole resonance. In this study, we uncover that even a simple tetrahedral nanoparticle supports rich spectral features due to symmetry breaking. This discovery runs counter to the reported gold tetrahedral nanoparticles, where only a single extinction peak was observed. We find that, in the case of a tetrahedral nanoparticle, the plasmonic quadrupole vertex mode becomes a bright mode and hybridizes with the dipole vertex mode, which splits the extinction peak and contributes to spectral diversity and tunability. The peak splitting is also found to be sensitively dependent on the roundness of vertices and edges. Furthermore, the tetrahedral depolarization factors are determined using the previously generalized absorption coefficient. We envision that this work will not only help fill the gap in understanding the optical properties enriched by symmetry breaking but also guide the superior probe design by combining spectral tunability with geometric simplicity of the nanoparticle.
机译:幽灵似地丰富但几何简单的电浆金属纳米粒子是高度青睐纳米光子学。symmetry-induced模式简并和间带transition-induced电浆阻尼。因此,大多数纳米粒子表现出一个专业消光峰来自最低偶极子共振。即使是一个简单的四面体纳米颗粒的支持由于对称性破坏丰富的光谱特性。这一发现的黄金四面体纳米粒子,只有一个消光峰被观察到。四面体纳米颗粒的情况下,电浆四极顶点模式变得明亮模式与偶极子与顶点模式,将灭绝的峰值和贡献光谱多样性和可调谐性。分裂也发现敏感依赖于圆度的顶点和边。此外,四面体去极化因素是决定使用前面广义的吸收系数。这工作不仅可以帮助填补这一缺口光学特性丰富的理解对称破坏,还指导上探针设计结合光谱的可调性与几何简单的纳米颗粒。

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