Tikhonov Alexander, Coalson Rob D, Asher Sanford A
Department of Chemistry, University of Pittsburgh, Pittsburgh, Pennsylvania 15260, USA.
Phys Rev B Condens Matter Mater Phys. 2008 Jun 3;77(23):235404. doi: 10.1103/PhysRevB.77.235404.
We theoretically characterized the diffraction properties of both closed-packed and non-closed-packed crystalline colloidal array (CCA) photonic crystals. A general theory based on single-scattering kinematic approach was developed and used to calculate the diffraction efficiency of CCA of different sphere diameters at different incident light angles. Our theory explicitly relates the scattering properties of individual spheres (calculated by using Mie theory) comprising a CCA to the CCA diffraction efficiency. For a CCA with a lattice constant of 380 nm, we calculated the relative diffraction intensities of the fcc (111), (200), and (220) planes and determined which sphere diameter gives rise to the most efficiently diffracting CCA for each set of crystal planes. The effective penetration depth of the light was calculated for several crystal planes of several CCAs of different sphere diameters at different angles of incidence. The typical penetration depth for a CCA comprised of polystyrene spheres was calculated to be in the range of 10-40 CCA layers. A one-dimensional (1D) model of diffraction from the stack of (111) fcc crystal layers was developed and used to assess the role of multiple scattering and to test our single-scattering approach. The role of disorder was studied by using this 1D scattering model. Our methodology will be useful for the optimization of photonic crystal coating materials.
我们从理论上表征了密排和非密排晶体胶体阵列(CCA)光子晶体的衍射特性。基于单散射运动学方法建立了一个通用理论,并用于计算不同球体直径的CCA在不同入射光角度下的衍射效率。我们的理论明确地将构成CCA的单个球体的散射特性(通过米氏理论计算)与CCA衍射效率联系起来。对于晶格常数为380 nm的CCA,我们计算了面心立方(fcc)(111)、(200)和(220)平面的相对衍射强度,并确定了对于每组晶面,哪种球体直径能产生衍射效率最高的CCA。计算了不同球体直径的几个CCA在不同入射角下几个晶面的光有效穿透深度。由聚苯乙烯球体组成的CCA的典型穿透深度计算在10 - 40个CCA层的范围内。建立了一个由(111)fcc晶体层堆叠的一维(1D)衍射模型,并用于评估多重散射的作用以及检验我们的单散射方法。利用这个1D散射模型研究了无序的作用。我们的方法将有助于优化光子晶体涂层材料。