论文标题

对太阳远半球的地震监测:未来太空天气预测中的关键组成部分(在太阳能和太空物理学的十年调查中提交的白皮书(Heliophysics) - SSPH 2024-2033)

Seismic Monitoring of the Sun's Far Hemisphere: A Crucial Component in Future Space Weather Forecasting (A White Paper Submitted to the Decadal Survey for Solar and Space Physics (Heliophysics) -- SSPH 2024-2033)

论文作者

Jain, Kiran, Lindsey, C., Adamson, E., Arge, C. N., Berger, T. E., Braun, D. C., Chen, R., Collado-Vega, Y. M., Dikpati, M., Felipe, T., Henney, C. J., Hoeksema, J. T., Komm, R. W., Leka, K. D., Marble, A. R., Pillet, V. Martinez, Miesch, M., Nickisch, L. J., Pevtsov, A. A., Pizzo, V. J., Tobiska, W. K., Tripathy, S. C., Zhao, J.

论文摘要

这份白皮书的目的是为在太阳遥远的半球中对磁性活动的热震监测的作用汇总一致的愿景,这将有助于改善未来十年的太空天气预测以及基础研究。我们的目标适合于在太阳能研究中进行更广泛的努力,当时HelioSeiscic监测器可能是太阳遥远半球的唯一天气观点。它旨在促进人们对太阳活动的日益了解,因为在两个半球中都经过现实监测,及其与近地和陆地环境的所有已知方面的关系。在未来十年中,通过对Farside太阳活动进行地震监控可以进行有效追求的一些问题和目标包括:Helioseismic签名与其相关的磁性配置之间的关系是什么,以及这种与太阳能EUV辐照期间的关系如何相关?对于精确的空间天气预测,Helioseissic监测如何为数据驱动的全球磁场模型有助于? Helioseiscic监视器可以告诉我们什么,有关在太阳旋转时期影响陆地环境的耀斑,CME或高速流的前景? Farside信息的包含如何有助于预测星际空间天气以及人类船员在星际空间中遇到的环境?因此,对于通过地面或太空传播观测值的发展而言,这对于继续在未来十年的发展至关重要。

The purpose of this white paper is to put together a coherent vision for the role of helioseismic monitoring of magnetic activity in the Sun's far hemisphere that will contribute to improving space weather forecasting as well as fundamental research in the coming decade. Our goal fits into the broader context of helioseismology in solar research for any number of endeavors when helioseismic monitors may be the sole synoptic view of the Sun's far hemisphere. It is intended to foster a growing understanding of solar activity, as realistically monitored in both hemispheres, and its relationship to all known aspects of the near-Earth and terrestrial environment. Some of the questions and goals that can be fruitfully pursued through seismic monitoring of farside solar activity in the coming decade include: What is the relationship between helioseismic signatures and their associated magnetic configurations, and how is this relationship connected to the solar EUV irradiance over the period of a solar rotation?; How can helioseismic monitoring contribute to data-driven global magnetic-field models for precise space weather forecasting?; What can helioseismic monitors tell us about prospects of a flare, CME or high-speed stream that impacts the terrestrial environment over the period of a solar rotation?; How does the inclusion of farside information contribute to forecasts of interplanetary space weather and the environments to be encountered by human crews in interplanetary space? Thus, it is crucial for the development of farside monitoring of the Sun be continued into the next decade either through ground-based or space-borne observations.

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