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Teaching 'Stellar Interferometry' with polymer optical fibers

机译:使用聚合物光纤教授“星光干涉法”

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In this manuscript we show the design of a simple experiment that reproduces the operation of the Michelson stellar interferometer by using step-index polymer optical fibers. The emission of stellar sources, single or binary stars, has been simulated by the laser light emerging from the output surface of the 2 meter-long polymer optical fiber. This light has an emission pattern that is similar to the emission pattern of stellar sources—circular, uniform, spatially incoherent, and quasi-monochromatic. Light coming from the fiber end faces passes through two identical pinholes located on a lid covering the objective of a small telescope, thus producing interference. Interference fringes have been acquired using a camera that is coupled to a telescope. The experiments have been carried out both outdoors in the daytime and indoors. By measuring the fringe visibilities, we have determined the size of our artificial stellar sources and the distance between them, when placing them at distances of 54 m from the telescope in the indoor measurements and of 75 m in the outdoor ones.
机译:在这份手稿中,我们展示了一个简单的实验设计,该实验通过使用阶跃折射率聚合物光纤重现了迈克尔逊恒星干涉仪的操作。从2米长的聚合物光纤的输出表面发出的激光已经模拟了恒星源(单星或双星)的发射。该光的发射模式类似于恒星源的发射模式-圆形,均匀,空间不相干和准单色。来自光纤端面的光穿过位于覆盖小望远镜物镜的盖子上的两个相同的针孔,从而产生干涉。干涉条纹已经使用与望远镜相连的相机获得。实验已在白天和室外进行。通过测量边缘可见性,我们将人造恒星源的大小以及它们之间的距离确定了,当将它们放置在距室内望远镜距望远镜54 m的距离和室外距望远镜75 m的距离时。

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