论文标题

与鲨鱼NIR的XO辅助冠状动脉:从模拟到实验室测试

XAO-assisted coronagraphy with SHARK NIR: from simulations to laboratory tests

论文作者

Umbriaco, Gabriele, Carolo, Elena, Vassallo, Daniele, Farinato, Jacopo, Baudoz, Pierre, Carlotti, Alexis, Greggio, Davide, Marafatto, Luca, Bergomi, Maria, Viotto, Valentina, Agapito, Guido, Biondi, Federico, Chinellato, Simonetta, De Pascale, Marco, Dima, Marco, D'Orazi, Valentina, Esposito, Simone, Magrin, Demetrio, Mesa, Dino, Pedichini, Fernando, Pinna, Enrico, Portaluri, Elisa, Puglisi, Alfio, Ragazzoni, Roberto, Stangalini, Marco

论文摘要

目前8-10米级望远镜目前正在运行用于检测和表征的几个极端自适应光学器件(XAO)系统。这些设施中通常使用冠状动脉来拒绝观察到的恒星的衍射光,并启用其折叠环境的直接成像和光谱。 Shark-Nir是一款可冠型摄像头,将在大型双眼望远镜(LBT)上实施。经过广泛的模拟运动,鲨鱼 - 尼尔团队选择了一套冠状技术,以便在仪器中实施,以满足科学要求。总而言之,高斯Lyot Coronagraph是服务所有需要现场稳定和中等对比度的科学案例的选择。以瞳孔稳定模式进行观察以搜索系外行星可以利用三个形状的瞳孔面具(SPC)和四季度相掩码(FQPM)冠冕。 SPC设计用于在距离恒星附近的一个小场上进行高对比度,并且在图像和学生抖动方面非常强大。 FQPM允许访问整个科学FOV(18''x18''),并在理想条件(高率高比)下提供出色的性能,但是性能仍然很好,既靠近又远离恒星,甚至在较低的Strehl和中等振动下。在采购阶段之后,将冠状面罩交付到了我们的实验室,我们开始测试他们在光学台上的性能,并定义了将在清洁室最终集成中使用的对齐过程。在本文中,我们描述了我们在实验室中使用Shark-nir Coronagraph进行的测试。我们在很高的条件下测量了每种技术可实现的对比度,并定义了一致性整合程序。

Several Extreme Adaptive Optics (XAO) systems dedicated to the detection and characterisation of the exoplanets are currently in operation for 8-10 meter class telescopes. Coronagraphs are commonly used in these facilities to reject the diffracted light of an observed star and enable direct imaging and spectroscopy of its circumstellar environment. SHARK-NIR is a coronagraphic camera that will be implemented at the Large Binocular Telescope (LBT). After an extensive simulation campaign, SHARK-NIR team selected a suite of coronagraphic techniques to be implemented in the instrument in order to fulfil the scientific requirements. In summary, the Gaussian Lyot coronagraph is the option to serve all those science cases requiring field-stabilization and moderate contrast. Observations in pupil-stabilized mode to search for exoplanets can take advantage of three Shaped Pupil masks (SPC) and a Four-Quadrant Phase Mask (FQPM) coronagraph. The SPC are designed for high contrast on a small field close to the star and are robust to image and pupil jitter. The FQPM allows to access the entire scientific FoV (18''x18'') and delivers excellent performance in ideal conditions (high Strehl ratios), but performance is still good, both close and further away from the star, even at lower Strehl and with moderate vibrations. After the procurement phase, the coronagraphic masks were delivered to our labs and we started to test their performance on the optical bench and define the alignment procedures that will be employed in the final integration of the instrument in our cleaning room. In this article, we describe the tests that we performed in the lab with SHARK-NIR coronagraphs. We measured the contrast achievable with each technique in very-high Strehl conditions and defined the alignment-integration procedures.

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