模型预测的天王星日侧磁层重联电压的变化

IF 2.9 2区 地球科学 Q2 ASTRONOMY & ASTROPHYSICS
S. Zomerdijk-Russell, J. M. Jasinski, A. Masters
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引用次数: 0

摘要

由于天王星位于太阳系外,它为从根本上理解太阳风-磁层相互作用提供了一个关键的缺失部分。粘滞相互作用是否会取代全球磁重联,成为外行星磁层顶的主导过程,目前还没有定论。在这里,我们提出了天王星系统在不同磁层结构下的日侧重联电压的理论预测,以评估全球磁重联在驱动天王星磁层中的有效性。我们发现,应用于天王星磁层的日侧重联电压中值为22.4 kV。在一个完整的行星旋转过程中,在天王星的磁层结构下,在固定的太阳风条件下,在其至日和春分季节,重联电压会发生几十千伏的变化。然而,我们没有发现不同季节的平均电压有显著差异,尽管天王星的磁层结构在冬至和春分之间有很大差异。当行星际磁场强度与太阳活动极大期的预期条件相对应时,模拟的重联电压从~ 17 kV增加到~ 31 kV。我们的研究结果表明,由于地球的日自转和太阳风条件的变化,在控制重联电压方面比季节依赖性更重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Variation of Model-Predicted Reconnection Voltages Applied to Uranus' Dayside Magnetosphere

Variation of Model-Predicted Reconnection Voltages Applied to Uranus' Dayside Magnetosphere

Uranus provides a key missing piece for fundamentally understanding solar wind-magnetospheric interactions due to its location in the outer solar system. Whether the viscous-like interaction overtakes global magnetic reconnection as the dominant process at the magnetopause of the outer planets remains unresolved. Here, we present theoretical predictions of dayside reconnection voltages applied to the Uranian system under different magnetospheric configurations to assess the effectiveness of global magnetic reconnection in the driving of Uranus' magnetosphere. We find the median model-predicted dayside reconnection voltage applied to Uranus' magnetosphere is 22.4 kV. Over just one full planetary rotation, the reconnection voltages are found to vary by tens of kV under Uranus' magnetospheric configuration during its solstice and equinox seasons with fixed solar wind conditions. However, we do not find a significant difference between average voltages at the different seasons, despite the large differences in magnetospheric configuration between solstice and equinox at Uranus. An increase from ∼17 to ∼31 kV in the modeled reconnection voltages is observed when the strength of the interplanetary magnetic field is increased corresponding to expected conditions during solar maximum. Our results suggest that variability resulting from the planet's diurnal rotation and changing solar wind conditions, are more important in controlling the reconnection voltages than seasonal dependencies.

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来源期刊
Journal of Geophysical Research: Space Physics
Journal of Geophysical Research: Space Physics Earth and Planetary Sciences-Geophysics
CiteScore
5.30
自引率
35.70%
发文量
570
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