Jordan T M, Partridge J C, Roberts N W
School of Biological Sciences, Woodland Road, University of Bristol, Bristol, BS8 1UG. ; Bristol Centre for Complexity Sciences, University of Bristol, Queen's Building, University Walk, Bristol BS8 1TR.
Nat Photonics. 2012 Nov;6(11):759-763. doi: 10.1038/nphoton.2012.260.
Dielectric multilayer reflectors that are non-polarizing are an important class of optical device and have numerous applications within optical fibres [1], dielectric waveguides [2] and LEDs [3]. Here we report analyses of a biological non-polarizing optical mechanism found in the broadband guanine-cytoplasm "silver" multilayer reflectors of three species of fish. Present in the fish stratum argenteum are two populations of birefringent guanine crystal, each with their optic axes either parallel to the long axis of the crystal or perpendicular to the plane of the crystal. This arrangement neutralizes the polarization of reflection due the different interfacial Brewster's angles of each population. The fish reflective mechanism is distinct from existing non-polarizing mirror designs [4, 5, 6, 7] with the important feature that there is no refractive index contrast between the low index layers in the reflector and the external environment. It is a mechanism that could be readily manufactured and exploited in synthetic optical devices.
非偏振介电多层反射器是一类重要的光学器件,在光纤[1]、介质波导[2]和发光二极管[3]等领域有众多应用。在此,我们报告了对三种鱼类宽带鸟嘌呤 - 细胞质“银色”多层反射器中发现的一种生物非偏振光学机制的分析。在鱼的银色层中存在两种双折射鸟嘌呤晶体群体,每个群体的光轴要么平行于晶体的长轴,要么垂直于晶体的平面。这种排列消除了由于每个群体不同的界面布儒斯特角而产生的反射偏振。鱼类的反射机制与现有的非偏振镜设计[4,5,6,7]不同,其重要特征是反射器中的低折射率层与外部环境之间不存在折射率对比度。这是一种可以很容易地在合成光学器件中制造和利用的机制。