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鱼类双锥的渐变折射率模型表现出不同的偏振敏感性。

Graded-index model of a fish double cone exhibits differential polarization sensitivity.

作者信息

Rowe M P, Engheta N, Easter S S, Pugh E N

机构信息

Institute of Neurological Sciences, University of Pennsylvania, Philadelphia 19104.

出版信息

J Opt Soc Am A Opt Image Sci Vis. 1994 Jan;11(1):55-70. doi: 10.1364/josaa.11.000055.

Abstract

The close apposition of the inner segments of the two cones that combine to form a double cone causes the pair of cone inner segments to guide light as a unitary structure whose transverse sections are roughly elliptical. Electron micrographs of the photoreceptors of a green sunfish (Lepomis cyanellus) retina provide evidence that the refractive index in the ellipsoid region of the inner segments of the double cones is higher in the center than at the perimeter. The hypothesis that the shape and refractive-index gradient could confer differential polarization sensitivity on double cones is examined with a two-dimensional waveguide model of a double-cone inner segment. The model has a dielectric constant that varies parabolically along the narrowest (x) dimension, leading to the index profile: n(x) = nmax[1-(x/x0)2]1/2, where nmax is the peak value of the index and x0 is a parameter specifying the rate at which the index decreases with increasing magnitude of x. A quantity, the polarization contrast, is introduced as a measure of the differential polarization sensitivity of adjacent receptors in the square mosaic of double cones in the sunfish retina. Polarization contrast is proportional to the relative difference in power absorbed by two double cones oriented with their shortest axes orthogonal to each other and stimulated by a field of uniform polarization. Polarization contrast is computed as a function of wavelength for appropriate values of nmax and x0. For normally incident light polarized parallel to one of the two axes of the double cones' cross sections, the polarization contrast is generally between 1% and 5% for wavelengths ranging from 550 to 750 nm. Over most of those wavelengths the polarization contrast of the graded-index-model double cone is approximately five times as large as that of a homogeneous-slab model of the same size and average refractive index. Additional benefits of a graded index, optical isolation of adjacent photoreceptors and antireflection at the photoreceptor entrance, are also discussed.

摘要

结合形成双锥的两个视锥细胞内段紧密并置,使得这对视锥细胞内段作为一个整体结构来引导光线,其横截面大致呈椭圆形。绿太阳鱼(蓝鳃太阳鱼)视网膜光感受器的电子显微镜照片表明,双锥细胞内段椭球体区域的折射率在中心处高于周边。利用双锥细胞内段的二维波导模型,研究了形状和折射率梯度可能赋予双锥细胞不同偏振敏感性的假说。该模型的介电常数沿最窄(x)维度呈抛物线变化,从而得到折射率分布:n(x) = nmax[1-(x/x0)²]¹/²,其中nmax是折射率的峰值,x0是一个参数,指定折射率随x值增大而降低的速率。引入一个量,即偏振对比度,作为衡量太阳鱼视网膜双锥细胞方形镶嵌中相邻感受器不同偏振敏感性的指标。偏振对比度与两个短轴相互正交且受到均匀偏振场刺激的双锥细胞吸收功率的相对差异成正比。针对nmax和x0的适当值,计算偏振对比度作为波长的函数。对于平行于双锥细胞横截面的两个轴之一偏振的垂直入射光,在550至750纳米的波长范围内,偏振对比度通常在1%至5%之间。在这些波长的大部分范围内,渐变折射率模型双锥细胞的偏振对比度大约是相同尺寸和平均折射率的均匀平板模型的五倍。还讨论了渐变折射率的其他益处,即相邻光感受器的光学隔离和光感受器入口处的抗反射。

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