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Operational concept of the VLT's adaptive optics facility and its instruments

机译:VLT自适应光学装置及其仪器的操作概念

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The ESO Adaptive Optics Facility (AOF) will transform UT4 of the VLT into a laser driven adaptive telescope in which the corrective optics, specifically the deformable secondary mirror, and the four Laser Guide Star units are integrated. Three instruments, with their own AO modules to provide field selection capabilities and wavefront sensing, will make use of this system to provide a variety of observing modes that span from large field IR imaging with GLAO, to integral field visible spectroscopy with both GLAO and LTAO, to SCAO high Strehl imaging and spectroscopy. Each of these observing modes carries its specific demands on observing conditions. Optimal use of telescope night-time, with such a high in demand and versatile instruments suite, is mandatory to maintain and even improve upon the scientific output of the facility. This implies that the standard VLT model for operations must be updated to cover these partly new demands. In particular, we discuss three key aspects: (1) the need for an upgrade of the site monitoring facilities to provide the operators with real-time information on the environmental conditions, including the ground layer strength, and their evolution throughout the night; (2) a set of tools and procedures to effectively use these data to optimize the short-term scheduling (i.e. with granularity of one night) of the telescope and (3) the upgrade of the current laser beam avoidance software to better cope with the AOF operational scheme, where the four laser units are continuously operated as long as the atmospheric conditions allow.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:ESO自适应光学装置(AOF)将VLT的UT4转换为激光驱动的自适应望远镜,其中集成了校正光学器件,特别是可变形的辅助镜和四个Laser Guide Star单元。三种仪器,具有自己的AO模块,可提供场选择功能和波前感测,将利用该系统提供多种观察模式,从使用GLAO的大视野IR成像到使用GLAO和LTAO的积分视野可见光谱,以SCAO高Strehl成像和光谱学。这些观察模式中的每一个都对观察条件有其特定的要求。如此之高的需求和多功能的仪器套件,对于夜间望远镜的最佳使用是维护甚至改善设施的科学输出所必须的。这意味着必须更新用于操作的标准VLT模型以涵盖这些部分新的需求。特别是,我们讨论了三个关键方面:(1)需要升级站点监视设施,以便为操作员提供有关环境状况的实时信息,包括底层强度及其在整个晚上的演变; (2)一套工具和程序,可有效地使用这些数据来优化望远镜的短期调度(即一晚的粒度),以及(3)升级现有的激光回避软件以更好地应对AOF操作方案,在大气条件允许的情况下,四个激光单元可以连续运行。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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