Wednesday, October 18, 2017

Abstract-Graphene plasmonics for surface enhancement near-infrared absorptivity



QingHui Pan, JiaRong Hong, GuoHua Zhang, Yong Shuai, and HePing Tan


https://www.osapublishing.org/oe/abstract.cfm?uri=oe-25-14-16400&origin=search

Monolayer graphene has poor absorption in the near-infrared region. Its layer is only as thick as a single atom so it cannot have a high absorptivity. In this paper, in order to form a hybrid system, the absorption characteristics of monolayer graphene covering a metal/dielectric/metal substrate has been theoretically analyzed. The magnetic polaritons in the metal/dielectric couple with the plasmonic resonance in the graphene to dramatically enhance the graphene absorptivity. This study analyzes the factors that enhance the absorptivity, including the geometric parameters and the relative positions of the graphene. The local electromagnetic field and the power dissipation density are illustrated to explain the underlying mechanisms further. These numerical results can provide potential application in the field of optical detection and optoelectronic devices.
© 2017 Optical Society of America

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