Towards high performance hybrid two-dimensional material plasmonic devices: strong and highly anisotropic plasmonic resonances in nanostructured graphene-black phosphorus bilayer

Plasmonics of two-dimensional materials have attracted increasing attention in the past few years. It provides a platform for strong light-matter interactions and enables a variety of novel applications in the infrared and terahertz ranges. In this paper, we study the plasmonic properties of a graph...

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Veröffentlicht in:Optics express 2018-08, Vol.26 (17), p.22528-22535
Hauptverfasser: Hong, Qilin, Xiong, Feng, Xu, Wei, Zhu, Zhihong, Liu, Ken, Yuan, Xiaodong, Zhang, Jianfa, Qin, Shiqiao
Format: Artikel
Sprache:eng
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Zusammenfassung:Plasmonics of two-dimensional materials have attracted increasing attention in the past few years. It provides a platform for strong light-matter interactions and enables a variety of novel applications in the infrared and terahertz ranges. In this paper, we study the plasmonic properties of a graphene-black phosphorus (G-BP) bilayer. It exhibits both strong and highly anisotropic plasmonic responses that performs beyond individual graphene and black phosphorus films. Polarization dependent, anisotropic perfect absorption can be realized in this type of two-dimensional plasmonic nanostructures with moderate doping levels. This type of hybrid architecture opens a new door for high performance two-dimensional material plasmonic devices.
ISSN:1094-4087
1094-4087
DOI:10.1364/OE.26.022528