极化子
激子
激子极化
凝聚态物理
声子
等离子体子
各向异性
物理
超材料
单层
材料科学
光电子学
光学
纳米技术
作者
Fanjie Wang,Chong Wang,Andrey Chaves,Chaoyu Song,Guowei Zhang,Shenyang Huang,Yuchen Lei,Qiaoxia Xing,Lei Mu,Yuangang Xie,Hugen Yan
标识
DOI:10.1038/s41467-021-25941-5
摘要
Hyperbolic polaritons exhibit large photonic density of states and can be collimated in certain propagation directions. The majority of hyperbolic polaritons are sustained in man-made metamaterials. However, natural-occurring hyperbolic materials also exist. Particularly, natural in-plane hyperbolic polaritons in layered materials have been demonstrated in MoO3 and WTe2, which are based on phonon and plasmon resonances respectively. Here, by determining the anisotropic optical conductivity (dielectric function) through optical spectroscopy, we predict that monolayer black phosphorus naturally hosts hyperbolic exciton-polaritons due to the pronounced in-plane anisotropy and strong exciton resonances. We simultaneously observe a strong and sharp ground state exciton peak and weaker excited states in high quality monolayer samples in the reflection spectrum, which enables us to determine the exciton binding energy of ~452 meV. Our work provides another appealing platform for the in-plane natural hyperbolic polaritons, which is based on excitons rather than phonons or plasmons.
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