The finite element method applied to the study of two-dimensional photonic crystals and resonant cavities

时域有限差分法 非周期图 光子晶体 平面波展开法 有限元法 光子学 平面波 光学 平面波展开 电介质 物理 背景(考古学) 材料科学 计算物理学 光电子学 数学 组合数学 热力学 古生物学 生物
作者
Imanol Andonegui,Ángel J. García-Adeva
出处
期刊:Optics Express [The Optical Society]
卷期号:21 (4): 4072-4072 被引量:52
标识
DOI:10.1364/oe.21.004072
摘要

A critical assessment of the finite element (FE) method for studying two-dimensional dielectric photonic crystals is made. Photonic band structures, transmission coefficients, and quality factors of various two-dimensional, periodic and aperiodic, dielectric photonic crystals are calculated by using the FE (real-space) method and the plane wave expansion or the finite difference time domain (FDTD) methods and a comparison is established between those results. It is found that, contrarily to popular belief, the FE method (FEM) not only reproduces extremely well the results obtained with the standard plane wave method with regards to the eigenvalue analysis (photonic band structure and density of states calculations) but it also allows to study very easily the time-harmonic propagation of electromagnetic fields in finite clusters of arbitrary complexity and, thus, to calculate their transmission coefficients in a simple way. Moreover, the advantages of using this real space method in the context of point defect cluster quality factor calculations are also stressed by comparing the results obtained with this method with those obtained with the FDTD one. As a result of this study, FEM comes out as an stable, robust, rigorous, and reliable tool to study light propagation and confinement in both periodic and aperiodic dielectric photonic crystals and clusters.

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