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Short-term relationship between solar irradiances and equatorial peak electron densities

机译:短期太阳能辐照度之间的关系和赤道峰电子密度

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摘要

The short-term relationship of the equatorial peak electron density and the solar short-wavelength irradiance is examined using foF2 observations from Jicamarca, Peru and recent solar irradiance measurements from satellites. Solar soft X-ray measurements from both the Student Nitric Oxide Explorer (SNOE) (1998–2000) and Thermosphere Ionosphere Mesosphere Energetics Dynamics (TIMED) (2002–2004) satellites as well as extreme ultraviolet (EUV) measurements from the TIMED satellite are used. Soft X-rays show similar or higher correlation with foF2 at short timescales (27 days or less) than EUV does, although the EUV correlation is higher for longer periods. For the short-term variations, both SNOE and TIMED observations have a higher correlation in the morning (~0.46) than in the afternoon (~0.1). In the afternoon, SNOE observations have a higher correlation (~0.2) with foF2 than the TIMED observations (~0.1 correlation), which may be due to differences in the solar cycle. At morning times, foF2 has a ~27-day variation, consistent with the solar rotation rate. After noon, but not in the morning, a ~13.5-day variation consistently appears in foF2. This ~13.5-day variation is attributed to geomagnetic influences.
机译:赤道的短期关系的峰值电子密度和太阳短波辐照度是使用foF2观察检查从Jicamarca、秘鲁和最近的太阳辐照度从卫星测量。测量学生的一氧化氮Explorer (SNOE)(1998 - 2000)和热大气层电离层中间层能量动力学(时间)(2002 - 2004)卫星以及极端从定时紫外线(EUV)测量使用卫星。更高的相关性与foF2在短时间尺度比EUV(27天或更少),尽管EUV长时间的相关性更高。短期变化,SNOE和时间观察有较高的相关性早上下午(~ 0.46)比(~ 0.1)。下午,SNOE观察有更高相关性(~ 0.2)foF2定时观察(~ 0.1相关),这可能是由于太阳活动周期的差异。次,foF2 ~ 27天的变化,一致与太阳的自转速率。第二天早上,~ 13.5天的变化一直出现在foF2。变化是归因于地磁的影响。

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