论文标题
光谱工程通过圆形纳米对象米拉纪的复杂模式:I。凸模式可通过圆形偏振光实现的综合光刻来调整
Spectral engineering via complex patterns of circular nano-object miniarrays: I. convex patterns tunable by integrated lithography realized by circularly polarized light
论文作者
论文摘要
通过圆两极化的光束对胶体球的照明可以制造凹入图案,这些凹形图案由圆形纳米孔米拉(Miniarrays)组成,可以通过升降过程将其转移到凸金属纳米粒子图案中。可以通过调整稍旋转的卫星纳米量子的中央纳米和四倍体的几何形状,并选择促进局部等离子体共振的那些方位角方向来实现独特的光谱和近场特性。通过转移由垂直且倾斜的单个同质圆极化束制造的面膜来制备的均匀金纳米和纳米量的六角形图案的光谱和近场作用,可以制定出来,以发现所支持的局部静脉曲张模式。研究了由单线纳米和单重弹性和四个纳米弹药的四颗粒制成的人造矩形图案,以分析纳米对象相互作用和晶格类型的作用。事实证明,所有纳米疗法现象均由方位定向对纳米的独立局部共振,以及纳米含量的C2,C1和U共振,以防万一$ \ bar {e} $ - 现场振荡方向垂直于对称性和对称性轴对称性轴。单个纳米对象上的局部表面等离子体共振之间的相互作用较弱,而散射的光子模式仅在雷利异常上仅在较大的Miniarrays的较大的周期性矩形模式上具有扰动作用。在促进组成纳米对象上的C和U共振的光谱位置可以实现偶极发射器的大量荧光增强。
Illumination of colloid sphere monolayers by circularly polarized beams enables the fabrication of concave patterns consisting of circular nanohole miniarrays that can be transferred into convex metal nanoparticle patterns via a lift-off procedure. Unique spectral and near-field properties are achievable by tuning the geometry of the central nanoring and quadrumer of slightly rotated satellite nanocrescents and by selecting those azimuthal orientations that promote localized plasmon resonances. The spectral and near-field effects of hexagonal patterns made of uniform gold nanorings and nanocrescents, that can be prepared by transferring masks fabricated by a perpendicularly and obliquely incident single homogeneous circularly polarized beam, were studied to uncover the supported localized plasmonic modes. Artificial rectangular patterns made of a singlet nanoring and singlet nanocrescent as well as quadrumer of four nanocrescents were investigated to analyze the role of nano-object interactions and lattice type. It was proven that all nanophotonical phenomena are governed by the azimuthal orientation independent localized resonance on the nanorings and by the C2, C1 and U resonances on the nanocrescents in case of $\bar{E}$-field oscillation direction perpendicular and parallel to their symmetry axes. The interaction between localized surface plasmon resonances on individual nano-objects is weak, whereas scattered photonic modes have a perturbative role at the Rayleigh anomaly only on the larger periodic rectangular pattern of miniarrays. Considerable fluorescence enhancement of dipolar emitters is achievable at spectral locations promoting the C and U resonances on the composing nano-objects.