Abstract
In this study, we focus on plasmonic nanoantenna structures for the U shaped. We will do our simulations with FDTD method (finite difference time domain) by considering commercial software Lumerical. We use U-shaped and play with the geometrical parameters such as length (L), width (W), high (H), to enhance the transmission of light. In addition to this, we will consider the different methods and substrates. U-shaped designed structure by using gold and MgF2 materials and studied how to enhance nanoantenna coefficients to get the highest electric field improvement factor and support dual-spectral resonances that can be changed from visible to near-IR wavelengths. For optimum coefficients, the proposed U-shaped nanoantenna reached the optimal transmission and multi-resonant for different geometrical size. In results shows that in this model are wideband range of wavelengths, optimal transmission and all physical border situations are selected to avoid undesired reflections. When we change the size of U-shaped with different materials is used and gets more proposes in the biosensors, biomedical, energy solar cells and laser optical communication. We can see that there are two resonances at (λ1 and λ2) wavelength range (500-950) nm, the first one has a transmission 0.73 at wavelength 700nm; and the other one has a transmission 0.88 at wavelength 845nm from this designed. We will investigate the structure of nanoantenna to be used as biosensors.
Author supplied keywords
Cite
CITATION STYLE
Aljanabi, M., Duhis, A. H., Aftan, A. O., & Alanı, N. (2019). The optimal transmission and dual resonant for different geometrical U-shaped THz nano antenna with surface plasmons (SPs) biosensors. Indonesian Journal of Electrical Engineering and Computer Science, 17(1), 457–463. https://doi.org/10.11591/ijeecs.v17.i1.pp457-463
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.