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首页> 外文期刊>The Astrophysical Journal. Letters >Sunrise: INSTRUMENT, MISSION, DATA, AND FIRST RESULTS
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Sunrise: INSTRUMENT, MISSION, DATA, AND FIRST RESULTS

机译:日出:仪器,任务,数据和第一结果

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摘要

The Sunrise balloon-borne solar observatory consists of a 1 m aperture Gregory telescope, a UV filter imager, an imaging vector polarimeter, an image stabilization system, and further infrastructure. The first science flight of Sunrise yielded high-quality data that revealed the structure, dynamics, and evolution of solar convection, oscillations, and magnetic fields at a resolution of around 100 km in the quiet Sun. After a brief description of instruments and data, the first qualitative results are presented. In contrast to earlier observations, we clearly see granulation at 214 nm. Images in Ca ii H display narrow, short-lived dark intergranular lanes between the bright edges of granules. The very small-scale, mixed-polarity internetwork fields are found to be highly dynamic. A significant increase in detectable magnetic flux is found after phase-diversity-related reconstruction of polarization maps, indicating that the polarities are mixed right down to the spatial resolution limit and probably beyond.
机译:日出气球式太阳观测台由1 m孔径的格雷戈里望远镜,紫外滤光镜,成像矢量偏振仪,图像稳定系统和其他基础设施组成。日出的第一次科学飞行产生了高质量的数据,这些数据揭示了在安静的太阳中分辨率约为100 km的太阳对流,振荡和磁场的结构,动力学和演化。在对仪器和数据进行简要描述之后,将给出第一个定性结果。与早期的观察结果相反,我们清楚地看到在214 nm处有颗粒。 Ca ii H中的图像在颗粒的明亮边缘之间显示出狭窄的,短暂的黑暗晶间通道。发现非常小规模的混合极性互联网络领域是高度动态的。在与相位分集相关的极化图重建之后,发现可检测的磁通量显着增加,这表明极性混合到了空间分辨率极限甚至可能更高为止。

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