TM-polarized Surface Plasmon Polaritons in Nonlinear Multi-layer Graphene-Based Waveguides: An Analytical Study
arXiv:2101.02536 · doi:10.1007/s11468-020-01336-y
Abstract
This paper presents an analytical study of TM-polarized surface plasmon polaritons (SPPs) in nonlinear multi-layer structures containing graphene sheets. In the general structure, each graphene sheet has been sandwiched between two different nonlinear magnetic materials. To show the richness of the proposed general waveguide, two novel nonlinear structures have been introduced and investigated as special cases of the general structure. It will be shown that the propagation features of these structures can be tuned by changing the chemical potential of the graphene and the incident mode power. A large value of the effective index, i.e. 240 for the chemical potential of 0.2 ev and the incident power of 3 is obtained for the second structure at the frequency of 40 THz. The analytical results confirm that the integration of nonlinear magnetic materials with graphene sheets can control and enhance the propagating features and the self-focused of the field in the nonlinear layer. This integration gives more degrees of freedom to the designer to propose new THz components such as lasers and switches in the THz region.
This is a post-peer-review, pre-copyedit version of an article published in Plasmonics (Springer). The final authenticated version is available online at: https://doi.org/10.1007/s11468-020-01336-y
References in corpus (9)
- A new electromagnetic mode in graphene
- Chiral Multi-layer Waveguides Incorporating Graphene Sheets: An Analytical Approach
- TM-polarized Surface Plasmon Polaritons in Nonlinear Multi-layer Graphene-Based Waveguides: An Analytical Study
- Anisotropic Multi-layer Cylindrical Structures Containing Graphene Layers: An Analytical Approach
- Anisotropic Multi-layer Elliptical Waveguides Incorporating Graphene Layers: A Novel Analytical Model
- A Novel Graphene-Based Circulator with Multi-layer Triangular Post for THz Region
- Grounded Graphene-Based Nano-Waveguide with Chiral Cover and Substrate: New Theoretical Investigation
- Magneto-Plasmons in Grounded Graphene-Based Structures with Anisotropic Cover and Substrate
- Analytical Investigation of Magneto-Plasmons in Anisotropic Multi-layer Planar Waveguides Incorporating Magnetically Biased Graphene Sheets
Cited by in corpus (6)
- Chiral Multi-layer Waveguides Incorporating Graphene Sheets: An Analytical Approach
- TM-polarized Surface Plasmon Polaritons in Nonlinear Multi-layer Graphene-Based Waveguides: An Analytical Study
- A Novel Graphene-Based Circulator with Multi-layer Triangular Post for THz Region
- Grounded Graphene-Based Nano-Waveguide with Chiral Cover and Substrate: New Theoretical Investigation
- Magneto-Plasmons in Grounded Graphene-Based Structures with Anisotropic Cover and Substrate
- Analytical Investigation of Magneto-Plasmons in Anisotropic Multi-layer Planar Waveguides Incorporating Magnetically Biased Graphene Sheets