...
首页> 外文期刊>Planetary and space science >Quasi-periodic emissions (15-80 min) from the poles of Jupiter as a principal source of the large-scale high-latitude magnetopause boundary layer of energetic particle
【24h】

Quasi-periodic emissions (15-80 min) from the poles of Jupiter as a principal source of the large-scale high-latitude magnetopause boundary layer of energetic particle

机译:来自木星两极的准周期发射(15-80分钟),这是高能粒子大规模高纬度磁层顶边界层的主要来源

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

In this study, we concentrate on the examination of the quasi-periodic behavior of 0.5-1.6 MeV (~40-400 keV) protons (electrons) and of relativistic ( > 16 MeV) electrons, observed at Jupiter by two different experiments onboard Ulysses, the HI-SCALE and COSPIN, respectively, within the large-scale south duskside magnetopause boundary layer (MPBL) of energetic particles, from ~20:00 UT, day 41, to 12:00 UT, day 43. During those times, the observations confirm the transition of Ulysses to an important magnetospheric region with particle intensities comparable to the magnetodisk levels. A careful analysis of high time-resolution intensity, anisotropy and spectral measurements suggests the following: (1) The quasi-periodic ~40 min (QP-40) energetic electron (> ~40 keV) and proton (> ~0.5 MeV) emissions from the south pole were a characteristic phenomenon in the south duskside MPBL; an almost continuous QP 40-min variation has been confirmed in energetic electron observations. (2) When the QP-40 modulation was not evident in energetic particle intensities, it was still detectable in spectral and anisotropy observations. (3) The QP-40 emission is a principal, but not the only periodic, energetic electron and proton emission; other periodicities (~15, ~20, ~30, ~50, ~60, ~80 min) were also significant in energetic particle spectral and anisotropy observations. We infer that QP-40 emissions along with other periodic emissions (~15, ~20, ~30, ~50, ~60, ~80 min) were the principal source of the large-scale high-latitude MPBL of energetic particles during Ulysses outbound pass of Jupiter.
机译:在这项研究中,我们重点研究通过在木星上进行的两次不同实验在木星上观察到的0.5-1.6 MeV(〜40-400 keV)质子(电子)和相对论(> 16 MeV)电子的准周期行为。 ,HI-SCALE和COSPIN分别在能量粒子的大型南黄昏磁层顶边界层(MPBL)内,从UT〜20:00 UT(第41天)到UT〜12:00 UT(第43天)。这些观察结果证实了尤利西斯号向重要的磁层区域的过渡,其粒子强度与磁盘水平相当。对高时间分辨率强度,各向异性和光谱测量结果的仔细分析表明:(1)准周期〜40 min(QP-40)高能电子(>〜40 keV)和质子(>〜0.5 MeV)发射从南极开始是南侧MPBL的典型现象。在高能电子观测中已经确认了几乎连续的QP 40分钟变化。 (2)当QP-40调制在高能粒子强度中不明显时,在光谱和各向异性观测中仍可检测到。 (3)QP-40发射是主要的,但不是唯一的周期性高能电子和质子发射;其他周期(〜15,〜20,〜30,〜50,〜60,〜80min)在高能粒子光谱和各向异性观测中也很重要。我们推断QP-40排放以及其他周期性排放(〜15,〜20,〜30,〜50,〜60,〜80分钟)是尤利西斯期间高能粒子的大规模高纬度MPBL的主要来源。木星出站通行证。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号