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Effect of Meteoric Ions on Ionospheric Conductance at Jupiter

机译:大气对电离层离子电导的影响在木星

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Ionospheric Pedersen and Hall conductances play significant roles in electromagnetic coupling between the planetary ionosphere and magnetosphere. Several observations and models have suggested the existence of meteoric ions with interplanetary origins in the lower part of Jupiter’s ionosphere; however, no models have considered the contributions of meteoric ions to ionospheric conductance. This study is designed to evaluate the contribution of meteoric ions to ionospheric conductance by developing an ionospheric model combining a meteoroid ablation model and a photochemical model. We find that the largest contribution to Pedersen and Hall conductivities occurs in the meteoric ion layer at altitudes of 350–600 km due to the large concentration of meteoric ions resulting from their long lifetimes of more than 100 Jovian days. Pedersen and Hall conductances are enhanced by factors of 3 and 10, respectively, in the middle- and low-latitude and auroral regions when meteoric ions are included. The distribution of Pedersen and Hall conductances becomes axisymmetric in the middle- and low-latitude regions. Enhanced axisymmetric ionospheric conductance should impact magnetospheric plasma convection. The contribution of meteoric ions to the ionospheric conductance is expected to be important only on Jupiter in our solar system because of Jupiter’s intense magnetic and gravitational fields.
机译:彼得森电离层和霍尔电导电磁耦合的重要角色在行星的电离层和之间磁气圈。建议大气离子的存在吗与星际起源的下部木星的电离层;考虑大气离子的贡献电离层电导。评估大气离子的贡献通过开发一个电离层电导电离层模型结合流星消融模型和一个光化学模型。彼得森最大的贡献和大厅导率发生在大气离子层350 - 600公里处的大造成大气离子的浓度他们的长寿命的100多威风凛凛的天。分别3和10的因素中、低纬度和极光的地区大气离子。他和霍尔电导中低纬度轴对称地区。导应该影响磁性层的等离子体对流。预计电离层电导重要的只有木星在太阳系因为木星的强烈的磁场和引力场。

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