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Thermal properties and two-dimensional photonic band gaps
Authors:Hussein A Elsayed  Sahar A El-Naggar
Affiliation:1. Department of Physics, Faculty of Sciences, Beni-Suef University, Egypt;2. Department of Engineering Mathematics and Physics, Faculty of Engineering, Cairo University, Giza, Egypt
Abstract:The effect of temperature on a two-dimensional square lattice photonic crystal composed of Si rods arranged in an air background was investigated theoretically using the plane-wave expansion method. Both the thermal expansion effect and thermo-optical effect are considered simultaneously. We have discussed the role of temperature in creating the complete photonic band gap as a function of temperature. Two different shapes of rods, i.e. square and circular, are considered in the presence of the two polarization states, i.e. TE and TM waves. The numerical results show that the photonic band gap can be significantly enlarged compared to the photonic band gap at room temperature. The effect of temperature on the complete photonic band width in the cylindrical rods case is more significant. Cylindrical and square Si rods may work as a temperature sensor or filter, among many other potential applications.
Keywords:plane-wave expansion method  two-dimensional photonic crystal  thermal properties  omnidirectional band  photonic band gap
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