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ROCKET OBSERVATIONS OF NATURAL AND ARTIFICIALLY STIMULATED PHENOMENA WITHIN A QUIET AURORAL ARC.

机译:在安静的自动弧内的自然和人工激发现象的火箭观测。

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摘要

An Aries sounding rocket launched from Kiruna, Sweden measured particle fluxes, DC and AC electric fields, and plasma density within and on the equatorward side of a quiet auroral arc. A striking anticorrelation between the cross-arc component of the electric field and the energy of the secondary peak in the electron differential particle flux was observed. A numerical procedure has been developed to simulate auroral electrodynamics and shows the observed anticorrelation to be consistent with a model in which field-aligned sheet currents are negligible with respect to ionospheric height integrated currents. The electric field is then determined from the divergenceless flow of the ionospheric current system and the transverse conductivities which are in turn controlled by the precipitating electrons. In addition large amplitude high frequency plasma waves were observed within a plasma density enhancement artificially created by a barium shaped charge experiment included on the payload. The waves are associated with the formation of a plateu in the formerly peaked auroral electron distribution function. These observations are explained in terms of the refractive trapping of wave packets within the artificial density enhancement. The resulting prolonged interaction of these waves with the auroral electrons allows the growth of the waves at the expense of the free energy in the electron distribution function.
机译:从瑞典基律纳发射的白羊座探测火箭测量了安静的极光弧内和赤道侧的粒子通量,DC和AC电场以及等离子体密度。观察到电场的电弧分量与电子微分粒子通量中次级峰的能量之间存在惊人的反相关性。已经开发出一种数值程序来模拟极光电动力学,并且显示出观察到的反相关性与其中电离层高度积分电流相对于场对准的薄板电流可以忽略的模型是一致的。然后根据电离层电流系统的无散度流和横向电导率确定电场,横向电导率又由沉淀电子控制。另外,在有效载荷中包括的钡状电荷实验人工创建的等离子体密度增强中,观察到大振幅高频等离子体波。这些波与先前达到峰值的极光电子分布函数中平台的形成有关。这些观察结果是根据人工密度增强内波包的折射陷波来解释的。这些波与极光电子的延长的相互作用使得波的生长以电子分布函数中的自由能为代价。

著录项

  • 作者单位

    University of California, Berkeley.;

  • 授予单位 University of California, Berkeley.;
  • 学科 Physics Fluid and Plasma.
  • 学位 Ph.D.
  • 年度 1980
  • 页码 121 p.
  • 总页数 121
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 等离子体物理学;
  • 关键词

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