材料科学
光电子学
可制造性设计
宽带
调制(音乐)
光开关
折射率
真延时
光学工程
对比度
光学
高对比度
三维光学数据存储
光学材料
光调制器
光通信
纳米光子学
梁(结构)
光学成像
动态范围
高动态范围
可重构性
光子学
作者
Yifei Zhang,Clayton Fowler,Junhao Liang,Bilal Azhar,Mikhail Y. Shalaginov,Skylar Deckoff-Jones,Sensong An,Jeffrey B. Chou,Christopher M. Roberts,Vladimir Liberman,Myungkoo Kang,Carlos Ríos,Kathleen A. Richardson,Clara Rivero-Baleine,Tian Gu,Hualiang Zhang,Juejun Hu
标识
DOI:10.1038/s41565-021-00881-9
摘要
Active metasurfaces promise reconfigurable optics with drastically improved compactness, ruggedness, manufacturability, and functionality compared to their traditional bulk counterparts. Optical phase change materials (O-PCMs) offer an appealing material solution for active metasurface devices with their large index contrast and nonvolatile switching characteristics. Here we report what we believe to be the first electrically reconfigurable nonvolatile metasurfaces based on O-PCMs. The O-PCM alloy used in the devices, Ge2Sb2Se4Te1 (GSST), uniquely combines giant non-volatile index modulation capability, broadband low optical loss, and a large reversible switching volume, enabling significantly enhanced light-matter interactions within the active O-PCM medium. Capitalizing on these favorable attributes, we demonstrated continuously tunable active metasurfaces with record half-octave spectral tuning range and large optical contrast of over 400%. We further prototyped a polarization-insensitive phase-gradient metasurface to realize dynamic optical beam steering.
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