Erdélyi Robert
University of Sheffield Solar Physics and upper-Atmosphere Research Group (SPARG), Department of Applied Mathematics Hicks Building, Hounsfield Road, Sheffield S3 7RH, UK.
Philos Trans A Math Phys Eng Sci. 2006 Feb 15;364(1839):289-96. doi: 10.1098/rsta.2005.1719.
The Sun's magnetic field is responsible for many spectacularly dynamic and intricate phenomena, such as the 11 year solar activity cycle, the hot and tenuous outer atmosphere called the solar corona, and the continuously expanding stream of solar particles known as the solar wind.Recently, there has been an enormous increase in our understanding of the role of solar magnetism in producing the observed complex atmosphere of the Sun. One such advance has occurred in the detection, by several different high-resolution space instruments on-board the Solar and Heliospheric Observatory and Transition Region and Coronal Explorer satellites, of magnetic waves and oscillations in the solar corona. The new subjects of solar atmospheric and coronal seismology are undergoing rapid development. The aim of this Scientific Discussion Meeting was to address the progress made through observational, theoretical and numerical studies of wave phenomena in the magnetic solar plasma. Major theoretical and observational advances were reported by a wide range of international scientists and pioneers in this field, followed by lively discussions and poster sessions on the many intriguing questions raised by the new results. Theoretical and observational aspects of magnetohydrodynamic waves and oscillations in general, and how these wave phenomena differ in various regions of the Sun, including sunspots, the transient lower atmosphere and the corona (in magnetic loops, plumes and prominences), were addressed through invited review papers and selected poster presentations. The results of these deliberations are collected together in this volume.
太阳磁场引发了许多壮观、动态且复杂的现象,比如为期11年的太阳活动周期、被称为日冕的炽热而稀薄的外层大气,以及持续扩张的太阳粒子流(即太阳风)。最近,我们对于太阳磁场在产生观测到的太阳复杂大气中所起作用的理解有了极大的提升。其中一项进展是,通过太阳和日球层天文台以及过渡区与日冕探测器卫星上搭载的几种不同的高分辨率空间仪器,探测到了日冕中的磁波和振荡。太阳大气和日冕地震学这些新学科正在迅速发展。本次科学研讨会的目的是探讨在对磁性太阳等离子体中的波动现象进行观测、理论和数值研究方面所取得的进展。众多国际科学家以及该领域的先驱者汇报了主要的理论和观测进展,随后针对新成果所引发的诸多有趣问题展开了热烈讨论和海报展示环节。通过特邀综述论文和精选的海报展示,探讨了磁流体动力学波和振荡的理论及观测方面,以及这些波动现象在太阳的不同区域(包括太阳黑子、瞬变低层大气和日冕(在磁环、日珥和日冕物质抛射中))是如何不同的。这些研讨的结果汇集于此卷。