首页> 外文会议>2015 1st URSI Atlantic Radio Science Conference >Postmidnight bubbles and scintillations in the quiet-time June solstice: Possible forcing from lower atmosphere
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Postmidnight bubbles and scintillations in the quiet-time June solstice: Possible forcing from lower atmosphere

机译:安静的六月冬至,午夜后的气泡和闪烁:可能是来自低层大气的强迫

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This paper presents a case study of the strong postmidnight bubbles that often occur during magnetically quiet periods primarily in June solstice, along with a 4 year (2009–2012) statistical study that shows strong occurrence peak during June solstice predominantly in the African sector. While the mechanism for producing plasma irregularities in the dusk sector is believed to be fairly well understood, the cause for the formation of irregularities and bubbles during postmidnight sector is still unknown, especially for magnetically quiet periods. For the first time, the presence of Rayleigh-Taylor (RT) instability during postmidnight hours has been confirmed by using the physics-based model for plasma densities and RT growth rates. The question is what cause for the generation of eastward electric field, which is the prime driver of RTI, during postmidnight sector? Several possible sources of the eastward electric fields that permit the RT instability to develop and form bubbles in the postmidnight local time sector has been considered.
机译:本文提供了一个案例研究,该案例研究主要在6月下至冬至的磁性静寂期中经常发生的午夜强气泡,并进行了为期4年(2009-2012年)的统计研究,该调查表明,在非洲至上的6月至冬期间出现了强烈的高峰。虽然在黄昏区产生等离子体不规则的机理被认为是相当了解的,但是在午夜后区形成不规则和气泡的原因仍是未知的,特别是在磁性安静的时期。通过使用基于物理学的血浆密度和RT增长率模型,首次确认了午夜后的Rayleigh-Taylor(RT)不稳定性。问题是在午夜之后产生引起RTI的主要动力的向东电场的产生原因是什么?已经考虑了允许RT不稳定性在午夜后的当地时间区域发展并形成气泡的东向电场的几种可能来源。

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