Mu Jianwei, Li Xun, Huang Wei-Ping
Department of Electrical and Computer Engineering, McMaster University, 1280 Main Street West, Hamilton,Ontario, L8S 4L8 Canada.
Opt Express. 2010 Jul 19;18(15):15893-900. doi: 10.1364/OE.18.015893.
A compact Bragg grating with embedded gapped metallic nano-structures is proposed and investigated theoretically. The Bragg grating consists of periodic planar metallic strips embedded in a dielectric waveguide. The grating exhibits distinct polarization characteristics due to its underlying working mechanisms of the metallic nano-strips. The grating can be considered as insulator-metal-insulator surface plasmonic polariton waveguide grating with improved light confinement for TM polarized waves. For the TE waves, significant field mismatch between metal and non-metal sections of the grating results in strong reflection. Comparison with the conventional deeply-etched grating on the same waveguide structures reveals interesting characteristics. It is concluded that the two types of grating structures share similar guidance, reflection and loss mechanisms for the TE modes. The spectral characteristics and their dependences on grating duty cycle are drastically different for the TM modes, mainly due to the SPP effect for the metal. Although the proposed grating performs slightly worse comparing to the deeply-etched grating for TE waves, its fabrication process should be easier since there will be no narrow trench (in sub-microns) deep-etching process (up to a few microns in depth) involved.
提出并从理论上研究了一种嵌入有间隙金属纳米结构的紧凑型布拉格光栅。该布拉格光栅由嵌入介质波导中的周期性平面金属条组成。由于金属纳米条的潜在工作机制,该光栅呈现出独特的偏振特性。该光栅可被视为绝缘体 - 金属 - 绝缘体表面等离子体激元波导光栅,对TM偏振波具有改善的光限制。对于TE波,光栅金属和非金属部分之间的显著场失配导致强烈反射。与相同波导结构上的传统深蚀刻光栅相比,揭示了有趣的特性。得出的结论是,对于TE模式,这两种类型的光栅结构具有相似的导波、反射和损耗机制。对于TM模式,光谱特性及其对光栅占空比的依赖性有很大不同,主要是由于金属的表面等离子体激元效应。尽管所提出的光栅在TE波方面与深蚀刻光栅相比性能略差,但其制造过程应该更容易,因为不涉及窄沟槽(亚微米级)深蚀刻工艺(深度达几微米)。