Optimization of the temperature dependence of a defect mode in a binary defective photonic crystal

Author:

Almawgani Abdulkarem H. M.1,Taya Sofyan A.2,AbuIbaid Sahar M.2,Alhamss Dana N.2,Colak Ilhami3

Affiliation:

1. Electrical Engineering Department, College of Engineering, Najran University, Najran, Kingdom of Saudi Arabia

2. Physics Department, Islamic University of Gaza, P.O. Box 108, Gaza, Palestine

3. Department of Electrical and Electronics Engineering, Nisantasi University, Istanbul, Turkey

Abstract

One-dimensional defective binary photonic crystal is considered with the structure (AB)[Formula: see text]D(AB)[Formula: see text], where A (TiO[Formula: see text] and B (SiO[Formula: see text] are the layers constituting the photonic crystal and D is the defect layer. The temperature dependence of the defect mode is investigated by considering both thermo-optic and thermal expansion effects. As the refractive indices and thicknesses of the photonic crystal layers are varied by temperature, the properties of the photonic crystal, such as bandgap and defect mode, are modified. Thus, we propose a tunable transmission filter operating in the visible region of the spectrum. It is found that the transmittance peak shift of the defect mode can be enhanced with the increase of both thermo-optic and the thermal expansion coefficients of the defect mode. As an example, we consider a photonic crystal with the structure (TiO2–SiO[Formula: see text]/SiOC/(TiO2–SiO[Formula: see text] and a transmittance peak shift of the defect mode of 1.51 nm is obtained for a temperature increase of [Formula: see text]C.

Funder

Najran University

Publisher

World Scientific Pub Co Pte Ltd

Subject

Condensed Matter Physics,Statistical and Nonlinear Physics

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