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高频扭转阿尔芬波作为日冕加热的能量源。

High-frequency torsional Alfvén waves as an energy source for coronal heating.

机构信息

Department of Physics, Indian Institute of Technology (BHU), Varanasi-221005, India.

Armagh Observatory, College Hill, Armagh, BT61 9DG, N. Ireland.

出版信息

Sci Rep. 2017 Mar 3;7:43147. doi: 10.1038/srep43147.

Abstract

The existence of the Sun's hot atmosphere and the solar wind acceleration continues to be an outstanding problem in solar-astrophysics. Although magnetohydrodynamic (MHD) modes and dissipation of magnetic energy contribute to heating and the mass cycle of the solar atmosphere, yet direct evidence of such processes often generates debate. Ground-based 1-m Swedish Solar Telescope (SST)/CRISP, Hα 6562.8 Å observations reveal, for the first time, the ubiquitous presence of high frequency (12-42 mHz) torsional motions in thin spicular-type structures in the chromosphere. We detect numerous oscillating flux tubes on 10 June 2014 between 07:17 UT to 08:08 UT in a quiet-Sun field-of-view of 60" × 60" (1" = 725 km). Stringent numerical model shows that these observations resemble torsional Alfvén waves associated with high frequency drivers which contain a huge amount of energy (10 W m) in the chromosphere. Even after partial reflection from the transition region, a significant amount of energy (~10 W m) is transferred onto the overlying corona. We find that oscillating tubes serve as substantial sources of Alfvén wave generation that provide sufficient Poynting flux not only to heat the corona but also to originate the supersonic solar wind.

摘要

日冕的热大气和太阳风的加速存在仍然是太阳天体物理学中的一个突出问题。尽管磁流体动力学(MHD)模式和磁能耗散有助于加热和太阳大气的质量循环,但这些过程的直接证据往往引发争议。基于地面的 1 米瑞典太阳望远镜(SST)/CRISP,Hα 6562.8 Å 观测首次揭示了日冕中薄丝状结构中普遍存在的高频(12-42 mHz)扭转运动。我们在 2014 年 6 月 10 日 07:17 UT 至 08:08 UT 之间在一个宁静太阳的 60"×60"(1"=725 km)视场中检测到许多振荡通量管。严格的数值模型表明,这些观测类似于与高频驱动器相关的扭转阿尔芬波,这些驱动器在日冕中包含大量能量(10 W m)。即使在从过渡区部分反射之后,仍有大量能量(~10 W m)转移到上覆日冕。我们发现,振荡管是阿尔芬波产生的重要源,它们提供的庞廷通量不仅足以加热日冕,还足以产生超音速太阳风。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d93/5335648/d028adf4990f/srep43147-f1.jpg

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