论文标题

太阳能矢量磁场的多高度测量:提交给太阳能和太空物理的deTADAL调查(Heliophysics)的白皮书2024-2033

Multi-height Measurements Of The Solar Vector Magnetic Field: A White Paper Submitted To The Decadal Survey For Solar And Space Physics (Heliophysics) 2024-2033

论文作者

Bertello, L., Arge, N., De Wijn, A. G., Gosain, S., Henney, C., Leka, K. D., Linker, J., Liu, Y., Luhmann, J., Macniece, P. J., Petrie, G., Pevtsov, A., Pevtsov, A. A.

论文摘要

这份白皮书主张太阳大气中矢量磁场多高度测量的重要性。正如本文档中简要描述的那样,这些测量对于解决当今太阳能和地球物理学中一些最基本问题的问题至关重要,包括:(1)在太阳能大气中观察到的磁场的起源是什么? (2)在整个太阳大气中,磁场和流之间的耦合是什么?需要精确测定活性区域的出现和演变,需要精确测量光球和色球三维磁场。预先存在的磁区域中新出现的磁通量会导致磁场的拓扑复杂性增加,从而导致耀斑和冠状质量弹出。矢量磁场的测量也构成了太空天气操作,研究和太阳大气层和地球球的建模的主要产物。拟议的下一代基于地面观测网络组(NGGONG)是一种协调的多平台仪器系统,将解决这些问题,并为监测以太空游泳为重点的努力研究和实用性研究和连续性提供统计研究的大型数据集。这也将使Sun-As-A-Star调查能够进行至关重要的研究,因为我们着眼于理解其他行星托管恒星。

This white paper advocates the importance of multi-height measurements of the vector magnetic field in the solar atmosphere. As briefly described in this document, these measurements are critical for addressing some of the most fundamental questions in solar and heliospheric physics today, including: (1) What is the origin of the magnetic field observed in the solar atmosphere? (2) What is the coupling between magnetic fields and flows throughout the solar atmosphere? Accurate measurements of the photospheric and chromospheric three-dimensional magnetic fields are required for a precise determination of the emergence and evolution of active regions. Newly emerging magnetic flux in pre-existing magnetic regions causes an increase in the topological complexity of the magnetic field, which leads to flares and coronal mass ejections. Measurements of the vector magnetic field constitute also the primary product for space weather operations, research, and modeling of the solar atmosphere and heliosphere. The proposed next generation Ground-based solar Observing Network Group (ngGONG), a coordinated system of multi-platform instruments, will address these questions and provide large datasets for statistical investigations of solar feature behavior and evolution and continuity in monitoring for space-weather focused endeavors both research and operational. It will also enable sun-as-a-star investigations, crucial as we look toward understanding other planet-hosting stars.

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