Van der Waals thin films of WTe2 for natural hyperbolic plasmonic surfaces

被引:0
作者
Chong Wang
Shenyang Huang
Qiaoxia Xing
Yuangang Xie
Chaoyu Song
Fanjie Wang
Hugen Yan
机构
[1] Fudan University,State Key Laboratory of Surface Physics and Department of Physics
[2] Fudan University,Key Laboratory of Micro and Nano
来源
Nature Communications | / 11卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
A hyperbolic plasmonic surface supports highly directional propagating polaritons with extremely large density of states. Such plasmon polaritons have been realized in artificially structured metasurfaces. However, the upper bound of the achievable plasmon wave vector is limited by the structure size, which calls for a natural hyperbolic surface without any structuring. Here, we experimentally demonstrate a natural hyperbolic plasmonic surface based on thin films of WTe2 in the light wavelength range of 16 to 23 microns by far infrared absorption spectroscopy. The topological transition from the elliptic to the hyperbolic regime is further manifested by mapping the isofrequency contours of the plasmon. Moreover, the anisotropy character and plasmon frequency exhibit prominent temperature dependence. Our study demonstrates the first natural platform to host 2D hyperbolic plasmons, which opens exotic avenues for the manipulation of plasmon propagation, light-matter interaction and light emission in planar photonics.
引用
收藏
相关论文
共 74 条
[1]  
High AA(2015)Visible-frequency hyperbolic metasurface Nature 522 192-196
[2]  
Roberts JA(2019)Tunable hyperbolic metamaterials based on self-assembled carbon nanotubes Nano Lett. 19 3131-3137
[3]  
Yang Y(2017)Hyperbolic spoof plasmonic metasurfaces NPG Asia Mater. 9 1232009-53
[4]  
Kildishev AV(2013)Planar photonics with metasurfaces Science 339 14-634
[5]  
Boltasseva A(2014)Hyperbolic metamaterials: fundamentals and applications Nano Converg. 1 1686-81
[6]  
Shalaev VM(2007)Far-field optical hyperlens magnifying sub-diffraction-limited objects Science 315 1699-85
[7]  
Shekhar P(2007)Magnifying superlens in the visible frequency range Science 315 48-560
[8]  
Atkinson J(2014)Enhancing spontaneous emission rates of molecules using nanopatterned multilayer hyperbolic metamaterials Nat. Nanotechnol. 9 630-562
[9]  
Jacob Z(2011)Graphene plasmonics for tunable terahertz metamaterials Nat. Nanotechnol. 6 77-1129
[10]  
Liu Z(2012)Optical nano-imaging of gate-tunable graphene plasmons Nature 487 82-194