Zank G P, Sterken V, Giacalone J, Möbius E, von Steiger R, Stone E S, Krimigis S M, Richardson J D, Linsky J, Izmodenov V, Heber B
Center for Space Plasma and Aeronomic Research (CSPAR), University of Alabama in Huntsville, Huntsville, AL 35805 USA.
Department of Space Science, University of Alabama in Huntsville, Huntsville, AL 35805 USA.
Space Sci Rev. 2022;218(4):34. doi: 10.1007/s11214-022-00900-8. Epub 2022 May 25.
Our understanding of the interaction of the large-scale heliosphere with the local interstellar medium (LISM) has undergone a profound change since the very earliest analyses of the problem. In part, the revisions have been a consequence of ever-improving and widening observational results, especially those that identified the entrance of interstellar material and gas into the heliosphere. Accompanying these observations was the identification of the basic underlying physics of how neutral interstellar gas and interstellar charged particles of different energies, up to and including interstellar dust grains, interacted with the temporal flows and electromagnetic fields of the heliosphere. The incorporation of these various basic effects into global models of the interaction, whether focused on neutral interstellar gas and pickup ions, energetic particles such as anomalous and galactic cosmic rays, or magnetic fields and large-scale flows, has profoundly changed our view of how the heliosphere and LISM interact. This article presents a brief history of the conceptual and observation evolution of our understanding of the interaction of the heliosphere with the local interstellar medium, up until approximately 1996.
自最初对该问题进行分析以来,我们对大规模日球层与本地星际介质(LISM)相互作用的理解发生了深刻变化。部分修订是观测结果不断改进和范围不断扩大的结果,尤其是那些确定星际物质和气体进入日球层的观测结果。伴随着这些观测结果的是对中性星际气体以及不同能量的星际带电粒子(包括星际尘埃颗粒)如何与日球层的时间流和电磁场相互作用的基本物理原理的确定。将这些各种基本效应纳入相互作用的全球模型中,无论是关注中性星际气体和拾取离子、诸如反常宇宙射线和银河宇宙射线等高能粒子,还是磁场和大规模流,都深刻改变了我们对日球层与本地星际介质如何相互作用的看法。本文简要介绍了直至1996年左右我们对日球层与本地星际介质相互作用的理解在概念和观测方面的演变历史。