光子晶体
蜂窝结构
胶体晶体
自组装
蜂巢
材料科学
六边形晶格
光子学
单层
格子(音乐)
纳米技术
电介质
胶体
凝聚态物理
光电子学
物理
复合材料
化学
声学
反铁磁性
物理化学
作者
Yeongha Kim,Stephan Wong,Changwon Seo,Jeong Hoon Yoon,Gwan Hyun Choi,Jan Olthaus,Doris E. Reiter,Jeongyong Kim,Pil J. Yoo,Teun-Teun Kim,Sang Soon Oh,Gi‐Ra Yi
标识
DOI:10.1021/acsanm.1c03986
摘要
The prime example of a two-dimensional photonic crystal featuring Dirac cones is based on the honeycomb lattice. Colloidal self-assembly can produce a two-dimensional colloidal structure over a large area but is limited to hexagonal-close-packed structures. Therefore, it has been challenging to fabricate honeycomb monolayers by colloidal self-assembly. Here, we fabricate a dielectric honeycomb lattice in a large area by template-assisted self-assembly and analyze its photonic structure. Although the Dirac point occurring at the K point is not accessible by light in free space, a part of the upper Dirac cone above the light line is verified by a Fourier analysis of the back-focal-plane image. Because the template-assisted self-assembly enables additional geometrical perturbations in the honeycomb lattice, various lattices can be fabricated. This additional degree of freedom may provide an alternative way of fabricating photonic topological insulators.
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