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High resolution Shack-Hartmann sensor based on array of nanostructured GRIN lenses.

作者信息

Kasztelanic Rafal, Filipkowski Adam, Pysz Dariusz, Stepien Ryszard, Waddie Andrew J, Taghizadeh Mohammad R, Buczynski Ryszard

出版信息

Opt Express. 2017 Feb 6;25(3):1680-1691. doi: 10.1364/OE.25.001680.

Abstract

We present a novel method for the development of a micro lenslets hexagonal array. We use gradient index (GRIN) micro lenses where the variation of the refraction index is achieved with a structure of nanorods made of 2 types of glasses. To develop the GRIN micro lens array, we used a modified stack-and-draw technology which was originally applied for the fabrication of photonic crystal fibers. This approach results in a completely flat element that is easy to integrate with other optical components and can be effectively used in high refractive index medium as liquids. As a proof-of-concept of the method we present a hexagonal array of 469 GRIN micro lenses with a diameter of 20 µm each and 100% fill factor. The GRIN lens array is further used to build a Shack-Hartmann detector for measuring wavefront distortion. A 50 lens/mm sampling density is achieved.

摘要

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