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ICOP & ICPET 2018, 24 - : 533-536 Back to browse issues page
Investigation and simulation of the optimized three-dimensional opal and inverse opal of SiO2 photonic crystals and synthesis of Polystyrene by controlling the thermodynamic property
Sareh Omidvari * 1, Azardokht Mazaheri 1, Seyed Mohammad Hasan Amin Javaheri 2, Seyed Mohammad Reza Mousavi 2, Mohammad Mahdavi 3
1- Institute of Applied Sciences of Malek Ashtar, Department of Physics
2- Institute of Applied Sciences of Malek Ashtar, Optoelectronic Center
3- Institute of Applied Sciences of Malek Ashtar, Department of Chemistry
Abstract:   (269 Views)

In this paper, three-dimensional photonic crystal structures of air inverse-opal and opal in the SiO2 is simulated and structures are optimized in order to have a wide frequency band gap. Using the optimal radius of air spheres, characteristic of the opal photonic crystal made of polystyrene spheres in air is simulated. Finally we are produced opal by sol-gel method obtained particles with optimal radius and equal size that their SEM images are similar to the simulation results.

Keywords: Opal, Inverse-opal, Polystyrene three-dimentional photonic crystal, Photonic crystal band gap
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Type of Study: Research | Subject: Special
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Omidvari S, Mazaheri A, Amin Javaheri S M H, Mousavi S M R, Mahdavi M. Investigation and simulation of the optimized three-dimensional opal and inverse opal of SiO2 photonic crystals and synthesis of Polystyrene by controlling the thermodynamic property. ICOP & ICPET. 2018; 24 :533-536
URL: http://opsi.ir/article-1-1468-en.html


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انجمن اپتیک و فوتونیک ایران Optics and Photonics Society of Iran
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