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Characterization of Single-mode Fiber Coupling at the Large Binocular Telescope

机译:大双筒望远镜单模光纤耦合的特征

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Optimizing on-sky single-mode fiber (SMF) injection is an essential part of developing precise Doppler spectrometers and new astrophotonics technologies. We installed and tested a prototype SMF-injection system at the Large Binocular Telescope in 2016 April. The fiber injection unit was built as part of the derisking process for a new instrument named iLocater that will use adaptive optics (AO) to feed a high resolution, near-infrared spectrograph. In this paper we report Y-band SMF coupling measurements for bright, M-type stars. We compare theoretical expectations for delivered Strehl ratio and SMF coupling to experimental results, and evaluate fundamental effects that limit injection efficiency. We find the pupil geometry of the telescope itself limits fiber coupling to a maximum efficiency of 0.78. Further analysis shows the individual impact of AO correction, tip-tilt residuals, and static (noncommon-path) aberrations contribute coupling coefficients of 0.33, 0.8 respectively. Combined, these effects resulted in an average Y-band SMF efficiency of 0.18 for all observations. Finally, we investigate the impact of fiber coupling on radial velocity precision as a function of stellar apparent magnitude.
机译:优化天空单模光纤(SMF)注射是开发精确多普勒光谱仪和新的Astrophotonics技术的重要组成部分。我们在2016年4月在大型双筒望远镜上安装并测试了一个原型SMF注入系统。光纤注入单元是作为Derisking过程的一部分,用于使用自适应光学器(AO)来使用自适应光学器的新仪器进行高分辨率近红外光谱仪。在本文中,我们向明亮的M型恒星报告Y波段SMF耦合测量。我们比较了对实验结果提供的斯特勒比比和SMF耦合的理论期望,并评估限制注射效率的基本效果。我们发现望远镜本身的瞳孔几何形状将光纤耦合限制在最大效率为0.78。进一步的分析显示了AO校正,尖端倾斜残差和静态(非常驻路径)像差的各个影响,贡献0.33,0.8分别的耦合系数。合并,所有观察结果的平均Y波段SMF效率为0.18。最后,我们研究了光纤耦合对径向速度精度的影响,作为恒星表观幅度的函数。

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