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Localized defect modes in dual-periodical multilayer structures based on porous silicon

机译:基于多孔硅的双周期多层结构中的局部缺陷模式

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We present an experimental study of the resonance modes in dual-periodical multilayer structures based on porous silicon. These multilayered structures are composed by stacking N times two substructures A, and B, i.e., (A _nB _m) ~N. The An and Bm are in turn composed of two different period units, a and b, respectively, where subscripts n and m are the period number in the a and b substructures. Both substructures a and b consist of a pair of alternating layers with high and low refractive indices n1 and n2, respectively. The thickness parameters of the dielectric layers in a and b are all different. We observe several resonance transmission peaks due to the periodical repetition of the A _nB _m structure. The number of resonance peaks, their full width at half-maximum (FWHM), etc., can be controlled by selecting the structural parameters of the system. The experimental data are in good agreement with those calculated using the transfer matrix method. These optical superlattices are very promising, since they can be designed so that the reflectance response presents a determined number of resonance modes in the most important window for optical communications, making them good candidates for direct applications.
机译:我们提出了基于多孔硅的双周期多层结构中共振模式的实验研究。这些多层结构是由N次堆叠两个子结构A和B,即(A _nB _m)〜N组成。 An和Bm依次由两个不同的周期单元a和b组成,其中下标n和m是a和b子结构中的周期数。两个子结构a和b分别由一对交替的层组成,分别具有高和低折射率n1和n2。 a和b中的介电层的厚度参数都不同。由于A _nB _m结构的周期性重复,我们观察到几个共振传输峰。共振峰的数目,半峰全宽(FWHM)等可以通过选择系统的结构参数来控制。实验数据与使用转移矩阵法计算的数据吻合良好。这些光学超晶格非常有前途,因为可以对其进行设计,以使反射率响应在光通信最重要的窗口中呈现出确定数量的共振模式,使其成为直接应用的理想候选者。

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