The Impact of Century-Scale Changes in the Core Magnetic Field on External Magnetic Field Contributions

被引:0
作者
Ingrid Cnossen
机构
[1] British Antarctic Survey,
[2] GFZ German Center for Geosciences,undefined
来源
Space Science Reviews | 2017年 / 206卷
关键词
Magnetic field; Magnetosphere; Ionosphere; Secular variation; Current systems;
D O I
暂无
中图分类号
学科分类号
摘要
The Earth’s internal magnetic field controls to a degree the strength, geographic positioning, and structure of currents flowing in the ionosphere and magnetosphere, which produce their own (external) magnetic fields. The secular variation of the Earth’s internal magnetic field can therefore lead to long-term changes in the externally produced magnetic field as well. Here we will examine this more closely. First, we obtain scaling relations to describe how the strength of magnetic perturbations associated with various different current systems in the ionosphere and magnetosphere depends on the internal magnetic field intensity. Second, we discuss how changes in the orientation of a simple dipolar magnetic field will affect the current systems. Third, we use model simulations to study how actual changes in the Earth’s internal magnetic field between 1908 and 2008 have affected some of the relevant current systems. The influence of the internal magnetic field on low- to mid-latitude currents in the ionosphere is relatively well understood, while the effects on high-latitude current systems and currents in the magnetosphere still pose considerable challenges.
引用
收藏
页码:259 / 280
页数:21
相关论文
共 156 条
  • [1] Cnossen I.(2014)The importance of geomagnetic field changes versus rising CO J. Space Weather Space Clim. 4 1512-1524
  • [2] Cnossen I.(2008) levels for long-term change in the upper atmosphere J. Atmos. Sol.-Terr. Phys. 70 849-858
  • [3] Richmond A.D.(2012)Modelling the effects of changes in the Earth’s magnetic field from 1957 to 1997 on the ionospheric hmF2 and foF2 parameters J. Geophys. Res. 117 3712-3718
  • [4] Cnossen I.(2013)How changes in the tilt angle of the geomagnetic dipole affect the coupled magnetosphere-ionosphere-thermosphere system J. Geophys. Res. 118 35-40
  • [5] Richmond A.D.(2011)Changes in the Earth’s magnetic field over the past century: effects on the ionosphere-thermosphere system and solar quiet (Sq) magnetic variation J. Geophys. Res. 116 4011-4021
  • [6] Cnossen I.(2012)The response of the coupled magnetosphere-ionosphere-thermosphere system to a 25 % reduction in the dipole moment of the Earth’s magnetic field J. Geophys. Res. 117 3669-3677
  • [7] Richmond A.D.(2012)The dependence of the coupled magnetosphere-ionosphere-thermosphere system on the Earth’s magnetic dipole moment J. Geophys. Res. 117 429-432
  • [8] Cnossen I.(2013)The effects of seasonal and diurnal variations in the Earth’s magnetic dipole orientation on solar wind-magnetosphere-ionosphere coupling J. Geophys. Res. Space Phys. 118 1025-1350
  • [9] Richmond A.D.(2010)Long-term changes in solar quiet (Sq) geomagnetic variations related to Earth’s magnetic field secular variation J. Geophys. Res. 115 1333-582
  • [10] Wiltberger M.(1976)Trends in the solar quiet geomagnetic field variation linked to the Earth’s magnetic field secular variation and increasing concentrations of greenhouse gases Rep. Ionos. Space Res. Jpn. 30 573-11,176