Structure and Dynamics for Graphs of Interplanetary Magnetic Field Vectors

IF 0.6 4区 物理与天体物理 Q4 ASTRONOMY & ASTROPHYSICS Cosmic Research Pub Date : 2024-04-15 DOI:10.1134/s0010952523600336
J. A. Antonov, V. I. Zakharov, I. N. Myagkova, N. A. Suhareva, J. S. Shugai
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Abstract

The paper applies the methods of information theory to the study of the interplanetary magnetic field and its variations as a result of solar activity. The statistical regularities of the projections of the vectors of the interplanetary magnetic field and the speed of the flow of solar wind particles do not carry information about the order of realization for the available states of the studied physical system. At the same time, such characteristics can be obtained from phase diagrams or phase portraits created on the basis of experimental samples in subspaces of the phase space, which display both the values of vector quantities and the sequence order in a particular time series. The paper proposes a method for synthesizing vector graphs in the phase subspace of the interplanetary magnetic field (IMF). Results are considered of the reconstruction and analysis of implemented graphs based on the time series of satellite monitoring of the state of the IMF, provided by the database of the NASA Goddard Space Flight Center since the beginning of 2023. The graph is constructed on the basis of experimental samples for projections of magnetic field vectors. Field vectors converge and diverge at the nodes of the graph, the edges of the graph allow one to control the analyzed trajectory of the system in the phase subspace and restore the transition tree for a particular vector field. The concept of a spherical reference surface of a vector graph is introduced, which allows one to bring the compared implementations of graphs to a single linear scale and a single curvature of the reference surface. Examples are considered under the action of various external factors associated with the solar magnetic field and coronal mass ejections.

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行星际磁场矢量图的结构与动力学
摘要 本文将信息论方法应用于研究行星际磁场及其因太阳活动而产生的变化。行星际磁场矢量投影和太阳风粒子流速度的统计规律性并不包含所研究物理系统现有状态的实现顺序信息。同时,这些特征可以从相图或相位肖像中获得,相图或相位肖像是在相空间子空间的实验样本基础上绘制的,显示了特定时间序列中的矢量量值和序列顺序。本文提出了一种在行星际磁场(IMF)相位子空间中合成矢量图的方法。根据美国国家航空航天局戈达德太空飞行中心数据库提供的自 2023 年初以来行星际磁场状态卫星监测时间序列,考虑了对已实施图形的重建和分析结果。该图是根据磁场矢量投影的实验样本构建的。磁场矢量在图的节点处收敛和发散,通过图的边可以控制相位子空间中系统的分析轨迹,并恢复特定矢量场的过渡树。我们引入了矢量图球形参考面的概念,这样就可以将比较过的图实现为单一线性尺度和单一曲率的参考面。在与太阳磁场和日冕物质抛射有关的各种外部因素的作用下考虑了一些例子。
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来源期刊
Cosmic Research
Cosmic Research 地学天文-工程:宇航
CiteScore
1.10
自引率
33.30%
发文量
41
审稿时长
6-12 weeks
期刊介绍: Cosmic Research publishes scientific papers covering all subjects of space science and technology, including the following: ballistics, flight dynamics of the Earth’s artificial satellites and automatic interplanetary stations; problems of transatmospheric descent; design and structure of spacecraft and scientific research instrumentation; life support systems and radiation safety of manned spacecrafts; exploration of the Earth from Space; exploration of near space; exploration of the Sun, planets, secondary planets, and interplanetary medium; exploration of stars, nebulae, interstellar medium, galaxies, and quasars from spacecraft; and various astrophysical problems related to space exploration. A chronicle of scientific events and other notices concerning the main topics of the journal are also presented.
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