论文标题

Ilocater SX采集摄像头的最终设计和天内测试:宽带单模纤维耦合

Final Design and On-Sky Testing of the iLocater SX Acquisition Camera: Broadband Single-Mode Fiber Coupling

论文作者

Crass, Jonathan, Bechter, Andrew, Sands, Brian, King, David L., Ketterer, Ryan, Engstrom, Matthew, Hamper, Randall, Kopon, Derek, Smous, James, Crepp, Justin R., Montoya, Manny, Durney, Oli, Cavalieri, David, Reynolds, Robert, Vansickle, Michael, Onuma, Eleanya, Thomes, Joseph, Mullin, Scott, Shelton, Chris, Wallace, Kent, Bechter, Eric, Vaz, Amali, Power, Jennifer, Rahmer, Gustavo, Ertel, Steve

论文摘要

在实现地面望远镜上实现衍射受限的天文光谱方面,可以有效地将光注射到单模纤维中(SMF)。通过使用自适应光学器件(AO)促进的SMF喂养光谱仪比可比的观察限制设计具有明显的优势,包括紧凑型仪器量内的较高光谱分辨率,以及远程独立的光谱仪设计。 iLocater是为大型双眼望远镜(LBT)建造的非常精确的径向速度(EPRV)光谱仪。我们为LBT的SX(左)主要镜子设计和构建了前端光纤注入系统或采集摄像头。该仪器于2019年安装,并经过了天内的调试和绩效评估。在本文中,我们介绍了仪器要求,采集摄像头设计以及第一张尺寸测量结果。在近红外(0.97-1.31μm)中,宽带单模纤维耦合超过35%(绝对)(绝对),在一系列目标幅度,光谱类型和观察条件下实现了。成功演示在天上的性能既代表着iLocater的发展,又代表了使基于地面的SMF喂养的天文工具成为现实的主要里程碑。

Enabling efficient injection of light into single-mode fibers (SMFs) is a key requirement in realizing diffraction-limited astronomical spectroscopy on ground-based telescopes. SMF-fed spectrographs, facilitated by the use of adaptive optics (AO), offer distinct advantages over comparable seeing-limited designs, including higher spectral resolution within a compact and stable instrument volume, and a telescope independent spectrograph design. iLocater is an extremely precise radial velocity (EPRV) spectrograph being built for the Large Binocular Telescope (LBT). We have designed and built the front-end fiber injection system, or acquisition camera, for the SX (left) primary mirror of the LBT. The instrument was installed in 2019 and underwent on-sky commissioning and performance assessment. In this paper, we present the instrument requirements, acquisition camera design, as well as results from first-light measurements. Broadband single-mode fiber coupling in excess of 35% (absolute) in the near-infrared (0.97-1.31μm) was achieved across a range of target magnitudes, spectral types, and observing conditions. Successful demonstration of on-sky performance represents both a major milestone in the development of iLocater and in making efficient ground-based SMF-fed astronomical instruments a reality.

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