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Implementation of field lens arrays in beam-deflecting microlens array telescopes

机译:光束偏转微透镜阵列望远镜中物镜阵列的实现

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摘要

Laterally displaceable microlens array telescopes allow for variable and fast beam deflection. The generation of spurious light usually leads to a reduction of transfer efficiency with increasing displacement. We present the introduction of an array of field lenses on the back side of a recollimating microlens array that results in a reduced deflection angle dependency of transfer efficiency. A paraxial matrix formalism is used to prove the theoretical elimination of spurious light by use of a field lens array. The fabrication of well-aligned double-sided lens arrays by UV replication is discussed. Measurements of transfer efficiency with and without the use of field lens arrays are compared with the results of numerical wave-optic simulations.
机译:可横向移动的微透镜阵列望远镜可实现快速可变的光束偏转。杂散光的产生通常会随着位移增加而导致传输效率降低。我们介绍了在重新准直微透镜阵列背面的物镜阵列的引入,这种阵列可降低传输效率对偏转角的依赖性。近轴矩阵形式用于通过使用物镜阵列来证明理论上消除了杂散光。讨论了通过紫外线复制制造对准良好的双面透镜阵列。将使用和不使用物镜阵列的传输效率的测量结果与数值波光学模拟的结果进行比较。

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