Shi Lina, Pottier Pierre, Peter Yves-Alain, Skorobogatiy Maksim
Engineering Physics Department, Ecole Polytechnique de Montréal, Montréal, QC, Canada.
Opt Express. 2008 Oct 27;16(22):17962-71. doi: 10.1364/oe.16.017962.
Using finite-difference time-domain method, we investigate photonic crystal slabs consisting of spherical voids or silica beads embedded into a dielectric slab as bio-chemical sensors. We study the dependence of the spectral position of guided-mode resonances on the refractive index of a slab material. The most sensitive design is based on voids filled with analyte. We also study the effects of the slab and analyte thicknesses on guided-mode resonance properties. We eventually demonstrate an aqueous analyte sensor with high sensitivity at visible wavelength as electro-magnetic energy distribution in some guided-mode resonances can be strongly localized in the analyte region.
利用时域有限差分法,我们研究了由嵌入介电平板中的球形空洞或二氧化硅微珠构成的光子晶体平板作为生化传感器的情况。我们研究了导模共振的光谱位置对平板材料折射率的依赖性。最灵敏的设计基于填充有分析物的空洞。我们还研究了平板和分析物厚度对导模共振特性的影响。最终,我们展示了一种在可见光波长下具有高灵敏度的水性分析物传感器,因为在某些导模共振中的电磁能量分布可以强烈地局域在分析物区域。