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Optical performance of axisymmetric edge-ray concentrators and illuminators

机译:轴对称边缘射线聚光器和照明器的光学性能

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摘要

The optical performance of axisymmetric radiation concentrators and illuminators that are derived when two-dimensional edge-ray designs are rotated about their optic axis is investigated. Of particular interest are devices with spherical and cylindrical absorbers or light sources, for which the inherent ray rejection can be substantial. From the principle of etendue (phase-space) conservation, a lower bound for ray rejection can be established. With computer ray tracing, we demonstrate that this bound underestimates the actual ray rejection by only a few percent at most. Hence, to a good approximation, it can be used as an equality in analytic predictions of characteristic, efficiency-concentration curves. By designing for absorbers or sources with a bald spot, the full range of efficiency and flux concentration values can be realized and the trade-off between them can be quantified. The optical performance of these edge-ray designs is also compared against fundamental upper bounds on the flux concentration and efficiency of axisymmetric devices.#1998 Optical Society of America OCIS codes: 150.2950, 350.5610.
机译:研究了二维边缘射线设计绕其光轴旋转时得出的轴对称辐射集中器和照明器的光学性能。具有球形和圆柱形吸收器或光源的设备尤其令人感兴趣,对于它们而言,固有的射线抑制作用可能很大。根据集光率(相空间)守恒的原理,可以确定射线拒绝的下限。通过计算机射线跟踪,我们证明了此界限最多将实际射线拒绝率低估了仅几个百分点。因此,可以很好地近似它用作特征,效率-浓度曲线的分析预测中的等式。通过设计具有秃点的吸收器或源,可以实现整个范围的效率和通量浓度值,并且可以量化它们之间的折衷。还将这些边缘射线设计的光学性能与轴对称设备的通量浓度和效率的基本上限进行了比较。#1998美国光学学会OCIS代码:150.2950,350.5610。

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