Gralak Boris, de Dood Michiel, Tayeb Gérard, Enoch Stefan, Maystre Daniel
FOM-Institute for Atomic and Molecular Physics, Amsterdam, The Netherlands.
Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Jun;67(6 Pt 2):066601. doi: 10.1103/PhysRevE.67.066601. Epub 2003 Jun 4.
We investigate numerically the existence of photonic band gaps in woodpile crystals. We present a numerical method specifically developed to solve Maxwell's equations in such photonic structures. It is based upon a rigorous mathematical formulation and leads to a considerable improvement of the convergence speed as compared to other existing numerical methods. We tested our method by comparing the calculated reflectivity with measurements on an actual sample, i.e., a silicon woodpile photonic crystal designed for 1.5 microm wavelength. Excellent agreement is obtained, provided the main structural imperfections of the sample are taken into account. We show that the existence of photonic band gaps in woodpile crystals requires an index contrast higher than 2.05 +/- 0.01. The effects of imperfections of such structures with an index contrast equal to 2.25 are also investigated. Thus, the relative band gap width falls from 3.5% to 2.2% with structurals imperfection similar to those of the sample.
我们通过数值方法研究了木堆晶体中光子带隙的存在情况。我们提出了一种专门开发的数值方法,用于求解此类光子结构中的麦克斯韦方程组。该方法基于严格的数学公式,与其他现有数值方法相比,收敛速度有了显著提高。我们通过将计算得到的反射率与在实际样品(即设计用于1.5微米波长的硅木堆光子晶体)上的测量结果进行比较,对我们的方法进行了测试。如果考虑样品的主要结构缺陷,就能得到很好的一致性。我们表明,木堆晶体中光子带隙的存在需要折射率对比度高于2.05±0.01。我们还研究了折射率对比度等于2.25的此类结构的缺陷影响。因此,当结构缺陷与样品类似时,相对带隙宽度从3.5%降至2.2%。