Optimal Selective Arbitrary-Spaced Filters Optimization Using GA Synthesis in One-Dimensional Silicon Photonic Crystal
The optimization process is a necessary step in the design of optimal optical devices with high performances. In this paper, optimization of unidirectional photonic crystal selective arbitrary-spaced filters based on silicon Material Si with large refractive index ( n = 3.5) are achieved based on th...
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Published in | SILICON Vol. 11; no. 2; pp. 789 - 795 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
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01.04.2019
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Abstract | The optimization process is a necessary step in the design of optimal optical devices with high performances. In this paper, optimization of unidirectional photonic crystal selective arbitrary-spaced filters based on silicon Material Si with large refractive index (
n
= 3.5) are achieved based on the genetic algorithm technique. The photonic crystal transmission synthesis is obtained by acting on the layer widths. Genetic algorithm is employed in order to reduce the quadratic error between the desired Gaussian function defined in advance and the synthesized power transmission spectra to obtain a desired curve and get the optimal filter layer thickness. As a result, eight filters have been synthesized around respectively the wavelengths: 1.1, 1.2, 1.3, 1.4, 1.55, 1.65, 1.75 and 1.95
μ
m with excellent selectivity and rejection less than 18% with a transmitted bandwidth of about 0.05
μ
m where a transmission of about 95% is recorded at the desired wavelengths. |
---|---|
AbstractList | The optimization process is a necessary step in the design of optimal optical devices with high performances. In this paper, optimization of unidirectional photonic crystal selective arbitrary-spaced filters based on silicon Material Si with large refractive index (n = 3.5) are achieved based on the genetic algorithm technique. The photonic crystal transmission synthesis is obtained by acting on the layer widths. Genetic algorithm is employed in order to reduce the quadratic error between the desired Gaussian function defined in advance and the synthesized power transmission spectra to obtain a desired curve and get the optimal filter layer thickness. As a result, eight filters have been synthesized around respectively the wavelengths: 1.1, 1.2, 1.3, 1.4, 1.55, 1.65, 1.75 and 1.95 μm with excellent selectivity and rejection less than 18% with a transmitted bandwidth of about 0.05 μm where a transmission of about 95% is recorded at the desired wavelengths. The optimization process is a necessary step in the design of optimal optical devices with high performances. In this paper, optimization of unidirectional photonic crystal selective arbitrary-spaced filters based on silicon Material Si with large refractive index ( n = 3.5) are achieved based on the genetic algorithm technique. The photonic crystal transmission synthesis is obtained by acting on the layer widths. Genetic algorithm is employed in order to reduce the quadratic error between the desired Gaussian function defined in advance and the synthesized power transmission spectra to obtain a desired curve and get the optimal filter layer thickness. As a result, eight filters have been synthesized around respectively the wavelengths: 1.1, 1.2, 1.3, 1.4, 1.55, 1.65, 1.75 and 1.95 μ m with excellent selectivity and rejection less than 18% with a transmitted bandwidth of about 0.05 μ m where a transmission of about 95% is recorded at the desired wavelengths. |
Author | Abri, Mehadji Chaker, Hichem Badaoui, Hadjira |
Author_xml | – sequence: 1 givenname: Hadjira surname: Badaoui fullname: Badaoui, Hadjira email: elnbh@yahoo.fr organization: STIC Laboratory, Faculty of Technology, University of Tlemcen – sequence: 2 givenname: Mehadji surname: Abri fullname: Abri, Mehadji organization: STIC Laboratory, Faculty of Technology, University of Tlemcen – sequence: 3 givenname: Hichem surname: Chaker fullname: Chaker, Hichem organization: RCAM Laboratory, Department of Electronic, Sidi Bel Abbès University |
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Cites_doi | 10.1103/PhysRevLett.58.2059 10.1142/S0217979217501235 10.1109/8.496255 10.1080/09500340.2016.1265676 10.1109/LPT.2016.2554103 10.1016/j.optcom.2012.10.001 10.1080/02286203.2008.11442465 10.1007/s12200-012-0301-y 10.1063/1.1862783 10.2528/PIERL11102404 10.1016/j.sna.2015.07.025 10.1016/j.physb.2014.10.019 10.1016/j.jda.2011.06.007 10.1103/PhysRevLett.58.2486 10.1364/OE.23.015038 10.1364/OL.36.001854 10.1080/09500340.2016.1208298 10.1364/OE.17.010126 10.2528/PIERB13052503 10.1016/j.ijleo.2017.11.168 10.1117/1.OE.54.6.067104 10.1007/978-3-642-02646-1 |
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Keywords | Layer width One-dimensional photonic crystals Synthesis Genetic algorithm Bragg structure Selective filters |
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SubjectTerms | Chemistry Chemistry and Materials Science Crystals Electric fields Electromagnetic wave filters Environmental Chemistry Genetic algorithms Helmholtz equations Inorganic Chemistry Lasers Materials Science Methods Optical Devices Optics Optimization Original Paper Photonic crystals Photonics Polymer Sciences Propagation Refractivity Silicon Synthesis Thickness Wavelengths |
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Title | Optimal Selective Arbitrary-Spaced Filters Optimization Using GA Synthesis in One-Dimensional Silicon Photonic Crystal |
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