Highly-anisotropic plasmons in two-dimensional hyperbolic copper borides

Author:

Geng Wenhui1,Gao Han1,Ding Chao1,Sun Lei1,Ma Xikui1,Li Yangyang1,Zhao Mingwen1ORCID

Affiliation:

1. Shandong University

Abstract

Hyperbolic materials have wide application prospects, such as all-angle negative refraction, sub-diffraction imaging and nano-sensing, owning to the unusual electromagnetic response characteristics. Compared with artificial hyperbolic metamaterials, natural hyperbolic materials have many advantages. Anisotropic two-dimensional (2D) materials show great potential in the field of optoelectronics due to the intrinsic in-plane anisotropy. Here, the electronic and optical properties of two hyperbolic 2D materials, monolayer CuB6 and CuB3, are investigated using first-principles calculations. They are predicted to have multiple broadband hyperbolic windows with low loss and highly-anisotropic plasmon excitation from infrared to ultraviolet regions. Remarkably, plasmon propagation along the x-direction is almost forbidden in CuB3 monolayer. The hyperbolic windows and plasmonic properties of these 2D copper borides can be effectively regulated by electron (or hole) doping, which offers a promising strategy for tuning the optical properties of the materials.

Funder

National Natural Science Foundation of China

Taishan scholarship of Shandong Province

Publisher

Optica Publishing Group

Subject

Atomic and Molecular Physics, and Optics

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