Article citationsMore>>
Huang, Y.F., Chattopadhyay, S., Jen, Y.J., Peng, C.Y., Liu, T.A., Hsu, Y.K., Pan, C.L., Lo, H.C., Hsu, C.H., Chang, Y.H., et al. (2007) Improved Broadband and Quasi-Omnidirectional Anti-Reflection Properties with Biomimetic Silicon Nanostructures. Nature Nanotechnology, 2, 770-774.
https://doi.org/10.1038/nnano.2007.389
has been cited by the following article:
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TITLE:
Nanostructured Anti-Reflection Coatings for Enhancing Transmission of Light
AUTHORS:
Behnam Kheyraddini Mousavi, Arash Kheyraddini Mousavu, Tito Busani, Mani Hossein Zadeh, S. R. J. Brueck
KEYWORDS:
IR, Effective Medium Theory, Reflection, Laser, Nano-Structure
JOURNAL NAME:
Journal of Applied Mathematics and Physics,
Vol.7 No.12,
December
18,
2019
ABSTRACT: Nanostructured, sub-wavelength anti-reflection layers (NALs) have attracted much attention as a new generation of anti-reflection surfaces. Among different designs, sub-wavelength periodic nanostructures are capable of enhancing transmission of coherent light through an interface without inducing scattering. In this work, we have explored a new profile for periodic NALs capable of transmitting IR light with higher efficiency compared to NALs based on a parabolic profile. To achieve high transmission and low diffraction, the profile and pitch of the nanostructured NALs are calculated using a combination of a multi-layer modeling and Rigorous Coupled Wave (RCWA) analysis.