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The Imaging Magnetograph eXperiment (IMaX) for the Sunrise Balloon-Borne Solar Observatory

机译:日出气球-伯恩天文台的成像磁记录仪(IMaX)

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The Imaging Magnetograph eXperiment (IMaX) is a spectropolarimeter built by four institutions in Spain that flew on board the Sunrise balloon-borne solar observatory in June 2009 for almost six days over the Arctic Circle. As a polarimeter, IMaX uses fast polarization modulation (based on the use of two liquid crystal retarders), real-time image accumulation, and dual-beam polarimetry to reach polarization sensitivities of 0.1%. As a spectrograph, the instrument uses a LiNbO3 etalon in double pass and a narrow band pre-filter to achieve a spectral resolution of 85 m?. IMaX uses the high-Zeeman-sensitive line of Fe i at 5250.2 ? and observes all four Stokes parameters at various points inside the spectral line. This allows vector magnetograms, Dopplergrams, and intensity frames to be produced that, after reconstruction, reach spatial resolutions in the 0. 15 - 0. 18 arcsec range over a 50×50 arcsec field of view. Time cadences vary between 10 and 33 s, although the shortest one only includes longitudinal polarimetry. The spectral line is sampled in various ways depending on the applied observing mode, from just two points inside the line to 11 of them. All observing modes include one extra wavelength point in the nearby continuum. Gauss equivalent sensitivities are 4 G for longitudinal fields and 80 G for transverse fields per wavelength sample. The line-of-sight velocities are estimated with statistical errors of the order of 5 - 40 m s-1. The design, calibration, and integration phases of the instrument, together with the implemented data reduction scheme, are described in some detail.
机译:成像磁记录仪(IMaX)是由西班牙的四个机构建造的分光旋光仪,于2009年6月在北极圈上空飞行了将近6天,乘坐日出气球式太阳观测台飞行。作为旋光仪,IMaX使用快速偏振调制(基于两个液晶延迟器的使用),实时图像累积和双光束偏振法来实现0.1%的偏振灵敏度。作为光谱仪,该仪器使用LiNbO3校准器两次通过并使用窄带预滤器以实现85 m?的光谱分辨率。 IMaX在5250.2?处使用Fei的高塞曼敏感线。并观察光谱线内各个点的所有四个斯托克斯参数。这允许生成矢量磁图,多普勒图和强度图,重建后,它们在50×50 arcsec视场中达到0. 15-0. 18 arcsec范围内的空间分辨率。时间节奏在10到33 s之间变化,尽管最短的仅包括纵向极化仪。光谱线是根据所应用的观察模式以各种方式采样的,从线内的两个点到其中的11个点。所有观测模式在附近的连续体中都包括一个额外的波长点。对于每个波长样本,高斯等效灵敏度的纵向场为4 G,横向场为80G。视线速度的估计误差为5-40 m s-1。详细介绍了仪器的设计,校准和集成阶段,以及已实施的数据缩减方案。

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