High spatial resolution imaging of light localization in hyperuniform disordered patterns of circular air pores in a dielectric slab

N. Granchi, R. Spalding, K. Stokkereit, M. Lodde, M. Petruzzella, Frank V. Otten, R. Sapienza, A. Fiore, Marian Florescu, F. Intonti
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Abstract

Hyperuniform disordered photonic structures are a peculiar category of disordered photonic heterostructures located between random structures and ordered photonic crystals. These materials, thanks to the presence of a photonic bandgap, exhibit the advantages of random and ordered structures since they have been shown to support in a small spatial footprint a high density of Anderson-localized modes, which naturally occur at the bandgap edges with peculiar features like relatively high Q/V ratios. Different localization behaviors have been recently reported in hyperuniform disordered luminescent materials, with a well-established and widely studied design, based on disordered networks. Here, we explore an alternative design, based on circular holes of different sizes hyperuniformely distributed, that we investigate theoretically and experimentally by means of scanning near-field optical microscopy. We report that the spectral features of hyperuniform disordered networks can also be extended to a different design, which, in turn, displays pseudo-photonic bandgaps and light localization. The ability of generating different kinds of hyperuniform disordered photonic systems that share the same theoretical and experimental optical features can largely extend practical potentialities and integration in many optoelectronic applications.
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介质板中圆形气孔超均匀无序模式光定位的高空间分辨率成像
超均匀无序光子结构是一类特殊的无序光子异质结构,位于随机结构和有序光子晶体之间。由于光子带隙的存在,这些材料展现了随机和有序结构的优势,因为它们已被证明在小的空间足迹中支持高密度的Anderson局域化模式,这些模式自然出现在带隙边缘,具有相对高的Q/V比等特殊特征。最近,在超均匀无序发光材料中报道了不同的局域化行为,基于无序网络的设计得到了广泛的研究。在这里,我们探索了一种基于不同尺寸超均匀分布圆孔的替代设计,我们通过扫描近场光学显微镜对其进行了理论和实验研究。我们报告说,超均匀无序网络的光谱特征也可以扩展到不同的设计中,从而显示出伪光子带隙和光局域化。产生具有相同理论和实验光学特征的不同类型的超均匀无序光子系统的能力可以在很大程度上扩展许多光电子应用中的实用潜力和集成性。
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