极化子
二硒化钨
色散(光学)
超短脉冲
超材料
光学
光电子学
波导管
折射
半导体
材料科学
物理
光子学
激光器
化学
生物化学
过渡金属
催化作用
作者
Aaron Sternbach,Shung Chull Chae,Simone Latini,Andrey Rikhter,Y. Shao,Bing Li,Daniel Rhodes,Bobae Kim,Peter Schuck,X. P. Xu,Xiaoyang Zhu,Richard D. Averitt,James Hone,Michael M. Fogler,Angel Rubio,Dimitri Basov
出处
期刊:Science
[American Association for the Advancement of Science (AAAS)]
日期:2021-02-05
卷期号:371 (6529): 617-620
被引量:39
标识
DOI:10.1126/science.abe9163
摘要
Lighting a route for hyperbolic dispersion The propagation of light within a material is usually well defined, with the propagation described by scattering and dispersion. In artificially designed metamaterials and in anisotropic layered materials, the dispersion can be hyperbolic, giving rise to subwavelength confinement of the light. Sternbach et al. show that the hyperbolic dispersion can be optically switched on and off on demand in the layered transition metal dichalcogenide tungsten diselenide (see the Perspective by Deng and Chen). Illuminating the material with ultrafast pulses of sub-bandgap light creates a transient waveguide, resulting in hyperbolic dispersion in the material. The ability to tune the dispersion characteristics on demand using optical pumping is an effective approach for developing ultrafast switching photonic devices and controlling the propagation of light on the nanoscale. Science , this issue p. 617 ; see also p. 572
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