论文标题

范德华(Van der Waals

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

论文作者

Wang, Chong, Huang, Shenyang, Xing, Qiaoxia, Xie, Yuangang, Song, Chaoyu, Wang, Fanjie, Yan, Hugen

论文摘要

双曲线等离子体表面支持具有极高密度状态的高度方向传播偏振子。这种等离子体极化子已在人为结构的跨度中实现。但是,可实现的等离子体波矢量的上限受结构大小的限制,该结构大小需要自然的双曲表面而没有任何结构。在这里,我们通过远红外吸收光谱法在16至23微米的光波长范围内,基于WTE2的薄膜,实验表明了天然双曲线等离子体表面。从椭圆形到双曲线状态的拓扑过渡通过映射等离子的ISO频轮廓进一步体现。此外,各向异性特征和等离子体频率表现出明显的温度依赖性。我们的研究表明,第一个自然平台容纳了2D双曲线等离子体,该平台为操纵等离子途径开辟了平面光子学中等离子体传播,轻度 - 物质相互作用和光发射的途径。

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 iso-frequency 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.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源