首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Triton's Variable Interaction With Neptune's Magnetospheric Plasma
【24h】

Triton's Variable Interaction With Neptune's Magnetospheric Plasma

机译:卫的变量与海王星的交互磁性层的等离子体

获取原文
获取原文并翻译 | 示例
           

摘要

The tilt between Neptune's magnetic and rotational axes, along with Triton's orbital obliquity, causes a strong time variability of the moon's local electromagnetic environment. To constrain Triton's interaction with the ambient magnetospheric plasma, we apply a hybrid (kinetic ions, fluid electrons) model including the moon's ionosphere and induced field. To represent the extremes in the changes to the local electromagnetic field over a synodic rotation, we consider two orientations between the ambient magnetic field and flow velocity. For each, we first investigate the (analytical) magnetic signatures associated with the superposition of Triton's induced field and the magnetospheric field in the absence of any plasma interaction effects. To constrain the effect of Triton's ionosphere on the currents, we model the interaction between the ionospheric and magnetospheric plasma in isolation from the moon's inductive response, before combining these effects to investigate the complex scenario of plasma interaction and induction. Finally, we explore the sensitivity of the plasma interaction to changes in the ambient plasma density and the strength of Triton's inductive response. Despite plasma interaction signatures that dominate the plasma perturbations far from the moon (beyond 3 Triton radii), we illustrate that the induced field is clearly discernible within 3 Triton radii, regardless of the moon's location within Neptune's magnetosphere. We find that the orientation of the magnetospheric field and velocity vectors strongly affects Triton's plasma interaction; at times, resembling those of Jupiter's or Saturn's moons, while at others, revealing unprecedented signatures that are likely unique to moons of the ice giants.
机译:海王星的磁场和旋转之间的倾斜轴,特里同的轨道倾角,引起强烈的时间变异性的月球当地的电磁环境。特里同与环境的交互磁性层的等离子体,我们应用混合(动能离子液体电子)模型包括月球的电离层和感应磁场。当地的极端变化在阴历旋转电磁场,我们考虑两个方向之间的环境磁场和流速。第一个研究(分析)磁签名的叠加卫的感应磁场和磁性层的在没有任何等离子体的相互作用效果。电离层电流,我们的模型电离层和之间的交互在隔离的磁性层的等离子体月球的感应响应,结合这些之前影响调查的复杂场景等离子体相互作用和归纳。探索等离子体相互作用的敏感性环境的变化和等离子体密度特里同强度的感应反应。等离子体相互作用主导的签名等离子体扰动远离月亮(超过3特里同半径),我们说明,诱导字段是清晰可辨的3氚核内半径,无论在月球的位置海王星的磁场。方向的磁性层的领域速度矢量强烈影响法螺的等离子体相互作用;木星或土星的卫星,而其他人,透露,前所未有的签名特有的冰巨人的卫星。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
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