论文标题

对深场观测的ELT-GMCAO性能的模拟

Simulations of ELT-GMCAO performance for deep field observations

论文作者

Portaluri, Elisa, Viotto, Valentina, Ragazzoni, Roberto, Arcidiacono, Carmelo, Bergomi, Maria, Dima, Marco, Greggio, Davide, Farinato, Jacopo, Magrin, Demetrio

论文摘要

全球 - 元素共轭自适应光学(GMCAO)方法提供了一种替代方法来纠正仅使用天然导向恒星(NGSS)到极大的地面望远镜的适当科学视野(FOV)。因此,即使在没有激光导恒的情况下,配备GMCAO的ELT样望远镜也可以在Strehl比率(SR)方面实现最佳性能,从而在研究星空贫困场上取得了令人印象深刻的结果,就像在深场观察的情况下一样。通过研究Chandra Deep South地区的6000个模拟高红移星系,GMCAO的好处和可用性已证明。但是,一项系统的研究模拟了天空中几个部分的观察结果,必须对GMCAO性能具有强大的统计数据。此处讨论的技术,断层扫描和天体物理参数作为giusto的输入(一种基于IDL的代码,估算了在考虑的字段上的SR,并对结果进行了统计考虑。最佳性能是使用相对接近科学FOV的恒星获得的。因此,SR与预期的那样,与NGSS的平均离轴位置相关,而其幅度则起次要作用。这项研究得出的结论是,正如预期的那样,SRS与银河纬度线性相关。由于缺乏低阶像差传感所需的天然导向星,GMCAO确认是一种有前途的技术,可以观察不使用激光信标就无法研究的区域。它代表了一种强大的替代方法或对ELT的激光方法的降低风险降低策略。

The Global-Multi Conjugated Adaptive Optics (GMCAO) approach offers an alternative way to correct an adequate scientific Field of View (FoV) using only natural guide stars (NGSs) to extremely large ground-based telescopes. Thus, even in the absence of laser guide stars, a GMCAO-equipped ELT-like telescope can achieve optimal performance in terms of Strehl Ratio (SR), retrieving impressive results in studying star-poor fields, as in the cases of the deep field observations. The benefits and usability of GMCAO have been demonstrated by studying 6000 mock high redshift galaxies in the Chandra Deep Field South region. However, a systematic study simulating observations in several portions of the sky is mandatory to have a robust statistic of the GMCAO performance. Technical, tomographic and astrophysical parameters, discussed here, are given as inputs to GIUSTO, an IDL-based code that estimates the SR over the considered field, and the results are analyzed with statistical considerations. The best performance is obtained using stars that are relatively close to the Scientific FoV; therefore, the SR correlates with the mean off-axis position of NGSs, as expected, while their magnitude plays a secondary role. This study concludes that the SRs correlate linearly with the galactic latitude, as also expected. Because of the lack of natural guide stars needed for low-order aberration sensing, the GMCAO confirms as a promising technique to observe regions that can not be studied without the use of laser beacons. It represents a robust alternative way or a risk mitigation strategy for laser approaches on the ELTs.

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