Abstract
In this paper, anisotropic graphene plasmonic structures are explored for light trapping and absorption enhancement in surrounding media. It is shown that electrically tunable and versatile spectral and polarization selectivity can be realized. Particularly, it is possible to control absorption of the incident light’s polarization component at a specific wavelength by varying the Fermi energy with suitable geometric designs. It may find applications for new types of infrared and THz photodetectors and will promote the research of other novel polarization devices.
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CITATION STYLE
Liu, W., Zhang, J., Zhu, Z., Yuan, X., & Qin, S. (2016). Electrically tunable absorption enhancement with spectral and polarization selectivity through graphene plasmonic light trapping. Nanomaterials, 6(9). https://doi.org/10.3390/nano6090155
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