...
首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Martian ionospheric responses to dynamic pressure enhancements in the solar wind
【24h】

Martian ionospheric responses to dynamic pressure enhancements in the solar wind

机译:火星电离层对动态压力的反应在太阳风的增强

获取原文
获取原文并翻译 | 示例
           

摘要

As a weakly magnetized planet, Mars ionosphere/atmosphere interacts directly with the shocked solar wind plasma flow. Even though many numerical studies have been successful in reproducing numerous features of the interaction process, these earlier studies focused mainly on interaction under steady solar wind conditions. Recent observations suggest that plasma escape fluxes are significantly enhanced in response to solar wind dynamic pressure pulses. In this study, we focus on the response of the ionosphere to pressure enhancements in the solar wind. Through modeling of two idealized events using a magnetohydrodynamics model, we find that the upper ionosphere of Mars responds almost instantaneously to solar wind pressure enhancements, while the collision dominated lower ionosphere (below ~150 km) does not have noticeable changes in density. We also find that ionospheric perturbations in density, magnetic field, and velocity can last more than an hour after the solar wind returns to the quiet conditions. The topside ionosphere forms complicated transient shapes in response, which may explain unexpected ionospheric behaviors in recent observations. We also find that ionospheric escape fluxes do not correlate directly with simultaneous solar wind dynamic pressure. Rather, their intensities also depend on the earlier solar wind conditions. It takes a few hours for the ionospheric/atmospheric system to reach a new quasi-equilibrium state.
机译:作为一个弱磁化的行星,火星大气电离层/直接与交互震惊的太阳风等离子体流。数值研究是成功的繁殖大量交互的特点过程中,这些早期的研究主要关注在稳定的太阳风条件下相互作用。最近的观测结果表明,等离子体逃跑通量明显增强的响应太阳风动态压力脉冲。研究中,我们专注于电离层的反应在太阳风的压力增强。通过建模的两个使用一个理想化的事件磁流体动力学模型,我们发现几乎上火星电离层响应瞬间太阳风的压力增强,而碰撞为主的低电离层(~ 150公里以下)没有明显的密度的变化。电离层扰动的密度,磁场领域,速度可以持续一个多小时太阳风后返回到安静条件。形状复杂的瞬态响应,也许可以解释意想不到的电离层行为最近的观察。电离层逃脱通量不关联同时直接与太阳风动态压力。在早些时候太阳风条件。几个小时的电离层/大气系统达到一个新的准平衡状态。

著录项

相似文献

  • 外文文献
  • 中文文献
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