Comparing optical properties of different species of diatoms

C. Maibohm, S. Friis, Yanyan Su, Karsten Rottwitt
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引用次数: 7

Abstract

Diatoms are single cellular algae encapsulated in an external wall of micro-structured porous silica called the frustule. Diatoms are present in all water environments and contribute with 20-25 % of the global primary production of oxygen by photosynthesis. The appearance of the frustule is very species dependent with huge variety in size, shape, and microstructure. We have experimentally investigated optical properties of frustules of several species of diatoms to further understand light harvesting properties together with common traits, effects and differences between the different frustules. We have observed, when incident light interacts with the micro-structured frustule it is multiple diffracted giving rise to wavelength dependent multiple focal points and other optical effects. Experimental results have been simulated and well confirmed by free space FFT propagation routine analysis software. The software uses parameters which are extracted from experimental images as basis for simulation and allows us to extract the influence of the different elements of the frustule. The information could be used both for predicting optical properties of diatoms and by changing frustule parameters, maybe by altering growth conditions of the diatoms tailor their optical properties.
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比较不同种类硅藻的光学特性
硅藻是一种单细胞藻类,被包裹在微结构多孔二氧化硅的外壁中。硅藻存在于所有的水环境中,并通过光合作用贡献了全球20- 25%的初级氧气生产。在尺寸、形状和微观结构上,其外观是非常依赖物种的。我们通过实验研究了几种硅藻晶体的光学特性,以进一步了解不同硅藻晶体的光收集特性,以及不同晶体之间的共同特征、效果和差异。我们已经观察到,当入射光与微结构晶体相互作用时,它是多重衍射的,产生波长依赖的多焦点和其他光学效应。用自由空间FFT传播例程分析软件对实验结果进行了仿真验证。该软件使用从实验图像中提取的参数作为仿真的基础,并允许我们提取不同元素对结构的影响。这些信息既可以用于预测硅藻的光学性质,也可以通过改变硅藻的生长条件来改变其光学性质。
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