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Ion Heating in the Polar Cap Under Northwards IMF Bz

机译:离子加热下的极冠向国际货币基金组织(IMF)热晕

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摘要

Joule heating deposits a significant amount of energy into the high-latitude ionosphere and is an important factor in many magnetosphere-ionosphere-thermosphere coupling processes. We consider the relationship between localized temperature enhancements in polar cap measured with the Resolute Bay Incoherent Scatter Radar-North (RISR-N) and the orientation of the interplanetary magnetic field (IMF). Based on analysis of 10 years of data, RISR-N most commonly observes ion heating in the noon sector under northward's IMF B_z. We interpret heating events in that sector as being primarily driven by sunwards plasma convection associated with lobe reconnection. We attempt to model two of the observed temperature enhancements with a data-driven first principles model of ionospheric plasma transport and dynamics, but fail to fully reproduce the ion temperature enhancements. However, evaluating the ion energy equation using the locally measured ion velocities reproduces the observed ion temperature enhancements. This result indicates that current techniques for estimating global plasma convection pattern are not adequately capturing mesoscale flows in the polar cap, and this can result in underestimation of the energy deposition into the ionosphere and thermosphere.
机译:大量的焦耳加热存款能源到高纬度地区电离层在很多的一个重要因素magnetosphere-ionosphere-thermosphere耦合流程。局部温度增强极地冰冠测量与坚决湾非相干散射Radar-North (RISR-N)的取向行星际磁场(IMF)。十年的数据,分析RISR-N最多通常观察到离子加热在中午部门在北方的国际货币基金组织的说是。事件,部门为主要驱动的朝着太阳等离子体对流有关叶重联。观察温度提升数据驱动的第一原理的电离层模型等离子体传输和动态,但未能完全离子温度增强繁殖。然而,评估使用离子能量方程本地测量离子速度繁殖观察到的离子温度增强。结果表明,当前的技术估计全球等离子体对流模式没有充分捕捉中尺度流极地冰冠,这可能导致低估的能量沉积到电离层和热大气层。

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