De Stefano Luca, Rea Ilaria, Rendina Ivo, De Stefano Mario, Moretti Luigi
National Council of Research-Institute for Microelectronics and Microsystems-Department of Naples, Via P. Castellino 111, 80131 Naples, Italy.
Opt Express. 2007 Dec 24;15(26):18082-8. doi: 10.1364/oe.15.018082.
In this work, we report on the light focusing ability exploited by the microshell of a marine organism: the Coscinodiscus wailesii diatom. A 100 microm spot size of a red laser beam is narrowed up to less than 10 microm at a distance of 104 microm after the transmission through the regular geometry of the diatom structure, which thus acts as a microlens. Numerical simulations of the electromagnetic field propagation show a good qualitative agreement with the experimental results. The focusing effect is due to the superposition of the waves scattered by the holes present on the surface of the diatom valve. Very interesting applications in micro-optic devices are feasible due to the morphological and biological characteristic of these unicellular organisms.
在这项工作中,我们报道了一种海洋生物——威氏圆筛藻硅藻的微壳所具有的光聚焦能力。一束红色激光束的光斑尺寸为100微米,在穿过硅藻结构的规则几何形状后,在104微米的距离处被缩小至小于10微米,因此该硅藻结构起到了微透镜的作用。电磁场传播的数值模拟结果与实验结果在定性上吻合良好。聚焦效应是由于硅藻瓣膜表面的孔洞所散射的波的叠加。由于这些单细胞生物的形态和生物学特性,在微光学器件中有着非常有趣的应用前景。