Title :
Surface plasmonic properties in graphene for the variation of chemical potential
Author :
Hassan, Asif ; Khan, Imran
Author_Institution :
Dept. of Electron. & Commun. Eng., Khulna Univ. of Eng. & Technol., Khulna, Bangladesh
Abstract :
Graphene which is an outstanding discovery in the area of nano-science shows remarkable electronic and optic properties. In terahertz frequency the surface plasmon wave is formed in graphene, where the fundamental properties of graphene can be controlled by using chemical potential. In this paper, the fundamental parameters of graphene such as relative permittivity, refractive index, propagation constant, resonant plasmon frequency, absorption coefficient, skin depth, modal wave vector are characterized by varying chemical potential. The maximum & minimum permittivity found as 3.6846 + 1.9473i and 1.6398 + 0.3659i; for the terahertz application the maximum & minimum frequencies found are 133 THz & 90 THz respectively. Graphene can be used in the field of plasmonic based devices because of its lowest dissipative loss at the terahertz frequency.
Keywords :
absorption coefficients; chemical potential; graphene; permittivity; plasmonics; refractive index; surface plasmons; terahertz materials; absorption coefficient; chemical potential variation; dissipative loss; electronic properties; frequency 133 THz; frequency 90 THz; graphene; modal wave vector; nanoscience; optic properties; plasmonic based devices; propagation constant; refractive index; relative permittivity; resonant plasmon frequency; skin depth; surface plasmon wave; surface plasmonic properties; terahertz frequency; Absorption; Chemicals; Graphene; Optical surface waves; Permittivity; Plasmons; Resonant frequency; Graphene; absorption coefficient; modal wave vector; resonant plasmon frequency; skin depth; surface plasmon wave; terahertz frequency;
Conference_Titel :
Informatics, Electronics & Vision (ICIEV), 2014 International Conference on
Conference_Location :
Dhaka
Print_ISBN :
978-1-4799-5179-6
DOI :
10.1109/ICIEV.2014.6850725