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Numerical simulation studies for the first-light adaptive optics system of the Large Binocular Telescope

机译:大型双筒望远镜的初光自适应光学系统的数值模拟研究

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We present our latest results concerning the simulation studies performed for the first-light adaptive optics (AO) system of the Large Binocular Telescope (LBT), namely WLBT. After a brief description of the "raw" performance evaluation results, in terms of Strehl ratios attained in the various considered bands (from V to K), we focus on the "scientific" performance that will be obtained when considering the subsequent instrumentation that will benefit from the correction given by the AO system WLBT and the adaptive secondary mirrors LBT672. In particular, we discuss the performance of the coupling with the instrument LUCIFER, working at near-infrared bands, in terms of signal-to-noise values and limiting magnitudes, and in both the cases of spectroscopy and photometric detection. We also give the encircled energies that are expected in the visible bands, result relevant in one hand for the instrument PEPSI, and in other hand for the "technical viewer" that will be on board the WLBT system itself.
机译:我们提供有关对大型双筒望远镜(LBT)的第一光自适应光学(AO)系统(即WLBT)进行的模拟研究的最新结果。在简要描述了“原始”性能评估结果之后,就在各个考虑的波段(从V到K)中获得的Strehl比而言,我们着重考虑在考虑后续仪器时将获得的“科学”性能。受益于AO系统WLBT和自适应辅助反射镜LBT672的校正。特别是,我们讨论了与LUCIFER仪器在近红外波段工作的耦合性能,涉及信噪比值和限制幅度,以及在光谱学和光度检测的情况下。我们还给出了在可见带中预期的环绕能量,一方面与PEPSI仪器相关,另一方面与将在WLBT系统本身上搭载的“技术观察者”相关。

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