Statistical Differences of the Properties of the Martian Foreshock Boundary During the Selected High and Low Solar Activity Intervals
-
Abstract
As the primary transition region in the solar wind–Mars interaction system, the Martian foreshock plays a significant role in the energy transfer and dissipation of the solar wind. Based on MAVEN observations during the selected solar high-activity interval over December 2014–February 2015 and solar low-activity interval over December 2018–February 2019, the properties of the Martian foreshock boundary are statistically studied. Distributions of solar wind parameters including the density, velocity, dynamic pressure, and magnetic field strength are investigated for analyses of their differences across the Martian foreshock boundary. Our results indicate that solar wind velocity across the Martian foreshock boundary shows little variation with respect to the solar activity levels. Solar wind dynamic pressure decreases slightly less during the selected low-activity interval, while the solar wind density shows a stronger enhancement during the selected low-activity interval. The boundary of the Martian foreshock is located farther from the bow shock during the selected high-activity interval and exhibits systematic correlations with the solar wind velocity and density. These findings support that the structure and dynamics of the Martian foreshock are different between the selected solar high- and low-activity intervals, which is important for improved understanding of the cross-scale interactions between the solar wind and Martian space.
-
-