光学
倾斜(摄像机)
单模光纤
倾斜感应器
镜头(地质)
大型双目望远镜
光纤
联轴节(管道)
光纤传感器
纤维
捆绑
多模光纤
梁(结构)
材料科学
望远镜
物理
工程类
机械工程
冶金
复合材料
作者
Philipp Hottinger,Robert J. Harris,Philipp‐Immanuel Dietrich,Matthias Blaicher,Martin Glück,Andrew Bechter,Jörg‐Uwe Pott,Oliver Sawodny,A. Quirrenbach,Jonathan Crass,C. Koos
出处
期刊:Advances in Optical and Mechanical Technologies for Telescopes and Instrumentation III
日期:2018-07-10
卷期号:: 77-77
被引量:16
摘要
We introduce a design for a tip-tilt sensor with integrated single-mode fiber coupling for use with the front-end prototype of the iLocater spectrograph at the Large Binocular Telescope to detect vibrations that occur within the optical train. This sensor is made up of a micro-lens array printed on top of a fiber bundle consisting of a central single-mode fiber and six surrounding multi-mode fibers. The design in based on a previous prototype that utilized a multi-core fiber with seven single-mode fibers. With this updated design, we are able to achieve a better sensing throughput. We report on the modeled performance: if the beam is perfectly aligned, 69% light is coupled into the central single-mode fiber feeding the scientific instrument. When the beam is not aligned, some of the light will be coupled into the outer sensing fibers, providing the position of the beam for tip-tilt correction. For this design we show that there is a linear response in the sensing fibers when the beam is subject to tip-tilt movement. Furthermore we introduce an adaptive optics testbed, which we call the Koenigstuhl Observatory Opto-mechatronics Laboratory (KOOL), this testbed currently simulates vibrations at the Large Binocular Telescope, and in collaboration we have extended it to allow single-mode fiber coupling tests.
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