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具有双曲线光色散的层状范德华晶体。

Layered van der Waals crystals with hyperbolic light dispersion.

作者信息

Gjerding M N, Petersen R, Pedersen T G, Mortensen N A, Thygesen K S

机构信息

CAMD, Department of Physics, Technical University of Denmark, Kongens Lyngby, 2800, Denmark.

Center for Nanostructured Graphene (CNG), Technical University of Denmark, Kongens Lyngby, 2800, Denmark.

出版信息

Nat Commun. 2017 Aug 22;8(1):320. doi: 10.1038/s41467-017-00412-y.

Abstract

Compared to artificially structured hyperbolic metamaterials, whose performance is limited by the finite size of the metallic components, the sparse number of naturally hyperbolic materials recently discovered are promising candidates for the next generation of hyperbolic materials. Using first-principles calculations, we extend the number of known naturally hyperbolic materials to the broad class of layered transition metal dichalcogenides (TMDs). The diverse electronic properties of the transition metal dichalcogenides result in a large variation of the hyperbolic frequency regimes ranging from the near-infrared to the ultraviolet. Combined with the emerging field of van der Waals heterostructuring, we demonstrate how the hyperbolic properties can be further controlled by stacking different two-dimensional crystals opening new perspectives for atomic-scale design of photonic metamaterials. As an application, we identify candidates for Purcell factor control of emission from diamond nitrogen-vacancy centers.Natural hyperbolic materials retain the peculiar optical properties of traditional metamaterials whilst not requiring artificial structuring. Here, the authors perform a theoretical screening of a large class of natural materials with hyperbolic dispersion among the family of layered transition metal dichalcogenides.

摘要

与人工构造的双曲线超材料相比,其性能受金属部件有限尺寸的限制,最近发现的天然双曲线材料数量稀少,但却是下一代双曲线材料的有前途的候选者。通过第一性原理计算,我们将已知天然双曲线材料的数量扩展到了层状过渡金属二硫属化物(TMD)的广泛类别。过渡金属二硫属化物的多样电子特性导致双曲线频率范围从近红外到紫外有很大变化。结合新兴的范德华异质结构领域,我们展示了如何通过堆叠不同的二维晶体进一步控制双曲线特性,为光子超材料的原子尺度设计开辟了新视角。作为一个应用,我们确定了用于控制金刚石氮空位中心发射的珀塞尔因子的候选材料。天然双曲线材料保留了传统超材料的特殊光学特性,同时不需要人工构造。在这里,作者对层状过渡金属二硫属化物家族中具有双曲线色散的一大类天然材料进行了理论筛选。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/868a/5567251/9fd6bd898ada/41467_2017_412_Fig1_HTML.jpg

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