Laser & Optoelectronics Progress, Volume. 59, Issue 17, 1716005(2022)
High Performance Broadband Infrared Absorber Based on Multilayer Graphene
Fig. 1. Schematic diagram of the composite micro-nano structure. (a) Three-dimensional view; (b) side view
Fig. 2. Effect of the number of graphene layers on its electrical conductivity. (a) Imaginary part of the conductivity; (b) real part of the conductivity
Fig. 3. Effect of the number of graphene layers on the dielectric constant and refractive index. (a) Dielectric constant; (b) refractive index
Fig. 4. Absorption spectra of micro-nano structures. (a) Absorption spectrum of single-layer graphene; (b) absorption spectrum of multilayer graphene; (c) effect of dielectric constant on the absorption spectrum of micro-nano structure; (d) effect of the number of graphene layers on the absorption spectra of micro-nano structures
Fig. 5. Absorption and reflection spectra of micro-nano structures at different periods. (a) Absorption spectrum; (b) reflection spectrum
Fig. 6. Optical properties of micro-nano structures. (a) Micro-nano structures with different numbers of graphene layers; (b) Micro-nano structures with different dielectric layer thicknesses
Fig. 7. Absorption spectra of micro-nano structures at different incident angles. (a) TM mode; (b) TE mode
Get Citation
Copy Citation Text
Hui Wang, Liying Liu, Zelin An, Ruzhi Wang. High Performance Broadband Infrared Absorber Based on Multilayer Graphene[J]. Laser & Optoelectronics Progress, 2022, 59(17): 1716005
Category: Materials
Received: Aug. 12, 2021
Accepted: Aug. 30, 2021
Published Online: Aug. 22, 2022
The Author Email: Hui Wang (wrz@bjut.edu.cn), Liying Liu (liuliying@bjut.edu.cn)