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Adaptive optics simulations for the MICADO SCAO system

机译:云水苏达系统的自适应光学仿真

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We present in this paper the current simulation results of the single-conjugate adaptive optics (SCAO) mode of the wide-field imager MICADO. MICADO is a near-IR camera for the European ELT, featuring a wide field (75″), spectroscopic, and coronagraphic capabilities. It has been chosen by ESO as one of the two first-light instruments. MICADO will be optimized for the multi-conjugate adaptive optics module MAORY and will also work in SCAO mode. This SCAO mode will provide MICADO a high-level, on-axis correction, making use of the adaptive secondary M4 in the telescope. It is shown here that the on-axis compensation level reaches Strehl ratios (SR) of the order of 0.70 in K band under median seeing condition, and quickly degrades with field angle. However, despite the important leak of the light from the core towards the halo, we demonstrate how the point spread function (PSF) remains topped with an Airy-like pattern even at low SR below 0.02. This known effect, due to the large telescope aperture, was already shown in past studies. We show here how dependent from the outer scale value this effect is, and we study how the presence of this peak allows the instrument to preserve astrometric capabilities even far out of the isoplanatic patch domain.
机译:我们在本文中存在目前仿真自适应光学(SCAO)模式的当前仿真结果宽田成像仪云母。 Micado是欧洲ELT的近红外摄像头,具有宽阔的场(75英寸),光谱和血管雕刻能力。它被ESO选择为两个第一灯仪器之一。 MICADO将针对多共轭自适应光学模块MAORY进行优化,也将在SCAO模式下工作。该SCAO模式将为MICADO提供高级,轴校正,在望远镜中使用自适应次级M4。这里示出的是,在中值的观察条件下,轴上补偿水平达到k带中的0.70的刻度量(SR),并用场角迅速降低。然而,尽管从核心朝向光环的光线泄漏,但我们证明了即使在低于0.02的低SR时,点扩散功能(PSF)也仍然具有通风的模式。由于大的望远镜孔径,这种已知的效果已经在过去的研究中显示。我们在这里展示了如何从外部比例值依赖这种效果,并且我们研究了这种峰值的存在甚至如何保护仪器才能远离Isoplanatic贴片域。

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