Instituto de Física, Universidad Autónoma de Puebla, A,P, J-48, Puebla, 72570, México.
Nanoscale Res Lett. 2012 Jul 13;7(1):392. doi: 10.1186/1556-276X-7-392.
: In this work, we report the experimental results and theoretical analysis of strong localization of resonance transmission modes generated by hybrid periodic/quasiperiodic heterostructures (HHs) based on porous silicon. The HHs are formed by stacking a quasiperiodic Fibonacci (FN) substructure between two distributed Bragg reflectors (DBRs). FN substructure defines the number of strong localized modes that can be tunable at any given wavelength and be unfolded when a partial periodicity condition is imposed. These structures show interesting properties for biomaterials research, biosensor applications and basic studies of adsorption of organic molecules. We also demonstrate the sensitivity of HHs to material infiltration.
: 在这项工作中,我们报告了基于多孔硅的混合周期/准周期异质结构 (HHs) 产生的共振传输模式强局域化的实验结果和理论分析。HHs 由在两个分布式布拉格反射器 (DBR) 之间堆叠准周期 Fibonacci (FN) 子结构形成。FN 子结构定义了在给定波长下可以可调谐的强局域模式的数量,并且在施加部分周期性条件时可以展开。这些结构在生物材料研究、生物传感器应用以及有机分子吸附的基础研究方面具有有趣的性质。我们还证明了 HHs 对材料渗透的敏感性。