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Modeling Shocks Detected by Voyager 1 in the Local Interstellar Medium

机译:Voyager 1在当地星际介质中检测到的冲击

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The magnetometer (MAG) on Voyager I (VI) has been sampling the interstellar magnetic field (ISMF) since 2012 August. The VI MAG observations have shown draped ISMF in the very local interstellar medium disturbed occasionally by significant enhancements in magnetic field strength. Using a three-dimensional, data-driven, multi fluid model, we investigated these magnetic field enhancements beyond the heliopause that are supposedly associated with solar transients. To introduce time-dependent effects at the inner boundary at 1 au, we used daily averages of the solar wind parameters from the OMNI data set. The model ISMF strength, direction, and proton number density are compared with VI data beyond the heliopause. The model reproduced the large-scale fluctuations between 2012.652 and 2016.652, including major events around 2012.9 and 2014.6. The model also predicts shocks arriving at VI around 2017.395 and 2019.502. Another model driven by OMNI data with interplanetary coronal mass ejections (ICMEs) removed at the inner boundary suggests that ICMEs may play a significant role in the propagation of shocks into the interstellar medium.
机译:Voyager I(VI)上的磁力计(MAG)自2012年8月以来一直在对星际磁场(ISMF)进行取样。 VI Mag观察结果在非常局部间隔介质中显示出垂直的ISMF,偶尔会受到磁场强度的显着增强。使用三维数据驱动的多体流体模型,我们研究了超越与太阳能瞬变相关联的精神病的这些磁场增强。为了在1 AU的内部边界处引入时间依赖的效果,我们从OMNI数据集使用了太阳风参数的日平均值。将模型ISMF强度,方向和质子数密度与超高超大的VI数据进行比较。该模型在2012.652和2016.652之间复制了大规模波动,包括​​2012.9和2014年的主要活动。该模型还预测到2017.395和2019.502左右到达VI的冲击。在内边界中移除了由OMNI数据驱动的另一模型,包括在内边界处移除的ICMES可以在冲击到星际介质的传播中发挥重要作用。

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