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The imaging magnetograph eXperiment for the SUNRISE balloon Antarctica project

机译:日出气球南极项目的成像磁力谱实验

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The SUNRISE balloon project is a high-resolution mission to study solar magnetic fields able to resolve the critical scale of 100 km in the solar photosphere, or about one photon mean free path. The Imaging Magnetograph eXperiment (IMaX) is one of the three instruments that will fly in the balloon and will receive light from the 1m aperture telescope of the mission. IMaX should take advantage of the 15 days of uninterrupted solar observations and the exceptional resolution to help clarifying our understanding of the small-scale magnetic concentrations that pervade the solar surface. For this, IMaX should act as a diffraction limited imager able to carry out spectroscopic analysis with resolutions in the 50.000-100.000 range and capable to perform polarization measurements. The solutions adopted by the project to achieve all these three demanding goals are explained in this article. They include the use of Liquid Crystal Variable Retarders for the polarization modulation, one LiNbO3 etalon in double pass and two modern CCD detectors that allow for the application of phase diversity techniques by slightly changing the focus of one of the CCDs.
机译:Sunrise Balloon项目是一种高分辨率的使命,可以研究太阳能磁场,能够在太阳能射击物体中解决100公里的临界等级,或大约一个光子意味着自由路径。成像磁力探测实验(IMAX)是将在球囊中飞行的三种仪器之一,并将收到来自任务的1M光圈望远镜的光。 IMAX应利用15天的不间断太阳能观测和特殊的解决方案,以帮助澄清我们对透露太阳能表面的小规模磁性浓度的理解。为此,IMAX应充当衍射有限的成像仪,能够在50.000-100.000范围内进行分辨率进行光谱分析,并且能够执行极化测量。该项目采用的解决方案达到所有这三项苛刻的目标在本条中解释。它们包括使用用于偏振调制的液晶可变延迟器,双通中的一个LINBO3标准龙和两个现代CCD检测器,其允许通过略微改变其中一个CCD的焦点来施加相位分集技术。

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