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Auroral Current and Electrodynamics Structure (ACES) observations of ionospheric feedback in the Alfvén resonator and model responses

机译:极光电流和电动力学结构(ace)对电离层的观察反馈阿尔芬谐振器和模型反应

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The ACES-High rocket, part of the Auroral Current and Electrodynamics Structure (ACES) mission launched from Poker Flat Research Range on 29 January 2009, obtained the first in situ measurements indicative of both of the observational characteristics associated with the ionospheric feedback instability as it flew through an auroral arc and its associated return current region. ACES-High observed Alfvénic wave structures localized in areas of roughly 10 km near the boundaries of the return current region associated with the discrete auroral arc and increased electron density with a temperature characteristic of a cold ionosphere. This density enhancement is believed to be caused by the excavation of plasma from lower altitudes via the ponderomotive force produced by the ionospheric Alfvén resonator, as shown by Streltsov and Lotko (2008). While this density is lower than expected from simulations and other observations by as much as an order of magnitude, the ratio of the enhancement to the background density is in agreement with predictions. The observations made by ACES-High agree with the model results by Streltsov and Lotko (2008) but show the localized wave structures only near the boundaries of the return current region and not throughout it. This can be explained by strong small-scale magnetic field-aligned currents that are generated by the interaction between the large-scale downward current and the ionosphere at these boundaries. Finally, a new model, based on that by Streltsov and Marklund (2006), was run with only one downward current region and produced results very similar to the observations seen by ACES-High. Key Points ACES-High made first in situ measurements of evidence of the IFI Observations partially agree with simulations by Streltsov and Lotko [2008] New model that decouples the FAC regions agrees well with ACES-High observations
机译:ACES-High火箭,极光电流的一部分和电动力学结构(ace)的使命从29日台地研究靶场发射2009年1月,获得第一个原位测量结果表明这两种相关的观测特征电离层反馈不稳定,因为它飞通过一个极光弧及其相关的回报当前的地区。结构的局部地区约10公里返回当前边界附近的地区与离散极光弧和关联增加电子密度与温度一个寒冷的电离层的特征。增强被认为是造成的从低海拔地区通过开挖的等离子体有质动力产生的电离层斯特雷索夫和Lotko阿尔芬谐振器,如图所示(2008)。从模拟和其他观察的一个数量级,的比例增强背景密度与预测。通过ACES-High同意模型结果斯特雷索夫和Lotko(2008),但显示本地化只有在边界附近的波系结构返回当前的地区,而不是在它。可以解释为强大的小规模磁field-aligned电流产生的大规模的下降之间的交互在这些边界电流和电离层。最后,基于一种新的模式,通过斯特雷索夫和Marklund(2006),只有一个运行向下的当前区域和生产结果非常类似于观察ACES-High。要点ACES-High第一现场测量的证据IFI的观察部分同意由斯特雷索夫和模拟Lotko[2008]新模型,将前沿空中管制官地区同意ACES-High观测

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