论文标题

自适应光学的红外波前传感辅助银河中心观测值,带有VLT干涉仪和重力:操作和结果

Infrared wavefront sensing for adaptive optics assisted Galactic Center observations with the VLT interferometer and GRAVITY: operation and results

论文作者

Hippler, Stefan, Brandner, Wolfgang, Scheithauer, Silvia, Kulas, Martin, Panduro, Johana, Bizenberger, Peter, Bonnet, Henry, Deen, Casey, Delplancke-Ströbele, Françoise, Eisenhauer, Frank, Finger, Gert, Hubert, Zoltan, Kolb, Johann, Müller, Eric, Pallanca, Laurent, Woillez, Julien, Zins, Gérard, Collaboration, GRAVITY

论文摘要

本文介绍了基于近红外波前传感光学光学(AO)系统CIAO的操作。 Coudé红外自适应光学(CIAO)系统是非常大的望远镜(VLT)干涉仪(VLTI)的中心辅助组件。它尤其可以使用重力仪器对银河中心(GC)进行观察。重力是一种高度专业的光束组合器,该设备将四个8米望远镜的光相干结合在一起,最后记录了同时在6个基线的K波段中的干涉测量值。 CIAO弥补了由大气湍流引起的相位扰动,这四个8 m单位望远镜(UT)在观察过程中经验。四个CIAO单元中的每个单元中的每个单元都在其UT处产生几乎衍射限制的图像质量,从而确保观察到的恒星物体的最大通量进入重力束组合器的纤维。我们介绍在操作的前三年获得的CIAO性能数据,这是天气条件的函数。我们描述了如何将CIAO配置和用于重力观测。此外,我们专注于近红外敏感的Saphira检测器的出色特征,该特征首次在Paranal上使用,并显示其作为波前传感器检测器的工作方式。

This article describes the operation of the near-infrared wavefront sensing based Adaptive Optics (AO) system CIAO. The Coudé Infrared Adaptive Optics (CIAO) system is a central auxiliary component of the Very Large Telescope (VLT) interferometer (VLTI). It enables in particular the observations of the Galactic Center (GC) using the GRAVITY instrument. GRAVITY is a highly specialized beam combiner, a device that coherently combines the light of the four 8-m telescopes and finally records interferometric measurements in the K-band on 6 baselines simultaneously. CIAO compensates for phase disturbances caused by atmospheric turbulence, which all four 8 m Unit Telescopes (UT) experience during observation. Each of the four CIAO units generates an almost diffraction-limited image quality at its UT, which ensures that maximum flux of the observed stellar object enters the fibers of the GRAVITY beam combiner. We present CIAO performance data obtained in the first 3 years of operation as a function of weather conditions. We describe how CIAO is configured and used for observations with GRAVITY. In addition, we focus on the outstanding features of the near-infrared sensitive Saphira detector, which is used for the first time on Paranal, and show how it works as a wavefront sensor detector.

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