...
首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >The Influence of Crustal Magnetic Fields on the Martian Bow Shock Location: A Statistical Analysis of MAVEN and Mars Express Observations
【24h】

The Influence of Crustal Magnetic Fields on the Martian Bow Shock Location: A Statistical Analysis of MAVEN and Mars Express Observations

机译:上地壳磁场的影响火星弓形激波位置:统计MAVEN和火星快车的观察分析

获取原文
获取原文并翻译 | 示例
           

摘要

Previous missions underlined the complex influence of the crustal magnetic fields on the Martian environment, including the plasma boundaries. Their influence on the bow shock is however poorly constrained, with most studies showing North/South differences attributed to the crustal fields, with various conclusions from little to strong variabilities. We analyze for the first time in detail the influence of crustal fields on the Martian shock location based on a multi-mission analysis (MAVEN and MEX). We introduce the angular distance to the strongest crustal field region in the southern hemisphere that induces the largest influence (but not unique, with a minimum pressure threshold analyzed). Its impact is at large scale (>40–60° around), is modulated by the local time of the strongest source region (with no influence beyond terminator), and maximizes when the Interplanetary Magnetic field (IMF) is stable during the preceding hours. We introduce a technique, that is, partial correlations, to provide a coherent picture for both MAVEN/MEX due to existing cross correlations with Extreme UltraViolet (EUV). A composite parameter is proposed, that represents the combined influence of EUV, magnetosonic mach number (two major drivers) and crustal fields, the latter having an impact of hundreds of km. The influence of crustal fields on the shock appears seasonal and correlated with the Total Electronic Content, revealing a large scale coupling between the crustal fields, the ionosphere and the shock. The crustal field influence on the shock is thus significant and complex, with a coupling to both the ionosphere below and the IMF above.
机译:先前的任务强调了复杂的影响在火星的地壳磁场环境,包括等离子体的边界。他们的影响力在弓形激波差的限制,多数研究显示北/南差异归因于地壳从没有字段,与不同的结论很强的可变性。时间在细节上地壳字段的影响基于一个火星冲击位置多任务分析(MAVEN和墨西哥人)。介绍了角距离最强地壳场地区在南半球(但不产生最大的影响独特的,最低压力阈值分析了)。),周围是调制的当地时间最强的源区(没有影响《终结者》),和最大化行星际磁场(IMF)是稳定的在前面的时间。技术,部分相关性,提供一个连贯的图片对MAVEN /墨西哥人现有的交叉相关性与极端紫外线(EUV)。提出,代表了合并后的影响的EUV magnetosonic马赫数(两个专业驱动程序)和地壳字段,后者有一个数百公里的影响。地壳在冲击出现季节性和字段与总电子含量,揭示大规模耦合之间的地壳字段、电离层和冲击。因此地壳磁场影响冲击重要和复杂,耦合两种下面的电离层,国际货币基金组织。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号