PLASMON MODES IN THREE-LAYER GRAPHENE WITH INHOMOGENEOUS BACKGROUND DIELECTRIC
Abstract
The aim of this paper is to investigate collective excitations and the damping rate in a multilayer structure consisting of three monolayer graphene sheets with inhomogeneous background dielectric at zero temperature within random-phase approximation. Numerical results show that one optical branch and two acoustic ones exist in the system. The lowest frequency branch disappears as touching single-particle excitation area boundary while two higher frequency branches continue in this region. Calculations also illustrate that the frequency of optical (acoustic) mode(s) decreases (increase) as interlayer separation increases. The inhomogeneity of background dielectric and the imbalance in the carrier density in graphene sheets decline significantly plasmon frequencies in the system. Therefore, it is meaningful to take into account the effects of inhomogeneous background dielectric when calculating collective excitations in three-layer graphene structures.
Author Information
Nguyen Van Men1*, Dong Thi Kim Phuong1, and Truong Minh Rang2
1An Giang University, Vietnam National University Ho Chi Minh City
2Student, An Giang University, Vietnam National University Ho Chi Minh City
*Corresponding author: nvmen@agu.edu.vn
Article history
Received: 10/09/2020; Received in revised form: 24/09/2020; Accepted: 30/09/2020