石墨烯
等离子体子
材料科学
光电子学
棱镜
表面等离子体子
双层石墨烯
纳米光子学
纳米尺度
光学
纳米技术
物理
作者
Pablo Alonso‐González,Alexey Y. Nikitin,F. Golmar,Alba Centeno,Amaia Pesquera,Saül Vélez,Jianing Chen,Gabrielė Navickaitė,Frank H. L. Koppens,Amaia Zurutuza,Fèlix Casanova,Luis E. Hueso,Rainer Hillenbrand
出处
期刊:Science
[American Association for the Advancement of Science]
日期:2014-05-23
卷期号:344 (6190): 1369-1373
被引量:360
标识
DOI:10.1126/science.1253202
摘要
Graphene plasmons promise unique possibilities for controlling light in nanoscale devices and for merging optics with electronics. We developed a versatile platform technology based on resonant optical antennas and conductivity patterns for launching and control of propagating graphene plasmons, an essential step for the development of graphene plasmonic circuits. We launched and focused infrared graphene plasmons with geometrically tailored antennas and observed how they refracted when passing through a two-dimensional conductivity pattern, here a prism-shaped bilayer. To that end, we directly mapped the graphene plasmon wavefronts by means of an imaging method that will be useful in testing future design concepts for nanoscale graphene plasmonic circuits and devices.
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