首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Statistical analysis of the location of the Martian magnetic pileup boundary and bow shock and the influence of crustal magnetic fields
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Statistical analysis of the location of the Martian magnetic pileup boundary and bow shock and the influence of crustal magnetic fields

机译:统计分析的位置火星磁连环相撞边界和弓形激波和地壳磁场的影响

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We use the data set from the magnetometer and electron reflectometer instruments on board the Mars Global Surveyor spacecraft to show that the crustal magnetic fields of Mars affect the location of the magnetic pileup boundary (MPB) and bow shock (BS) globally. We search for crossings of the MPB and BS in the data that were observed over the first 16 months of the mission. To identify the influence of the crustal magnetic fields, all crossings are extrapolated to the terminator plane in order to remove the solar zenith angle (SZA) dependence, and to make it possible to compare crossings independently of location. The MPB crossings that were observed over regions on Mars, which contain strong crustal magnetic fields, are on average located further out than crossings observed over regions with weak crustal fields. This is shown in three separate longitude intervals. We also find that the dayside BS crossings observed over the southern hemisphere of Mars are on average located further out than the BS crossings observed over the northern hemisphere, possibly because of the influence of the crustal fields. We also study the magnetic field strength and its variation at the inside of the MPB and their dependence on the SZA and altitude. We find that the magnitude of the magnetic field in the MPB is closely linked to the altitude of the MPB, with the magnitude increasing as the MPB is observed closer to the planet.
机译:从磁强计和我们使用的数据集电子反射计仪器上火星环球探测者号飞船显示火星地壳磁场影响磁连环相撞边界的位置(产)全球和弓形激波(BS)。口岸的产甲烷和BS的数据观察超过16个月的任务。确定地壳磁场的影响字段,所有口岸外推到为了消除太阳终结者飞机天顶角(SZA)的依赖,并使它可能比较独立的过境点的位置。在火星上的区域,含有强地壳磁场,平均位置进一步观察,比口岸地区与地壳薄弱领域。单独的经度的间隔。昼BS口岸观察的火星南半球平均比b口岸位于更远观察到在北半球,可能由于地壳的影响。我们还研究了磁场强度和它的产甲烷及其内部的变化对SZA和高度的依赖。产甲烷的磁场的大小产甲烷的高度,紧密相连大小增加为产甲烷是观察接近地球。

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