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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Long‐term variations in tweek reflection height in the D and lower E regions of the ionosphere
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Long‐term variations in tweek reflection height in the D and lower E regions of the ionosphere

机译:长期吱声反射高度的变化D和E地区电离层的低

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We investigated, for the first time, long‐term (1976–2010) variations in reflection heights of tweek atmospherics based on very low frequency (VLF) observations at Kagoshima, Japan. The results revealed the effects of the solar cycle on the nighttime lower ionosphere at low to middle latitudes. The tweek reflection heights on geomagnetically quiet days were analyzed every month over three solar cycles by using an automated spectral fitting procedure to estimate the cutoff frequency. The average and standard deviation of the reflection height were 95.9 km and ±3.1 km, respectively. Typical periods of time variation for the reflection height were 13.3, 3.2, 1.3, 1.0, 0.6, and 0.5 years. The variations in tweek reflection heights did not show simple anticorrelation with solar activity. The correlation coefficient between tweek reflection height and sunspot number was 0.03 throughout the three solar cycles. Hilbert‐Huang transform analysis successfully indicated the presence of 0.5–1.5 year and ~10 year variations as intrinsic mode functions (IMF). The decomposed IMF with the ~10 year variation had a positive correlation with sunspot numbers and a negative correlation with galactic cosmic rays (GCRs). We hypothesize that these variations in tweek reflection heights could be caused by coupling of several ionization effects at the D and lower E regions, effects such as geocorona, GCRs, particle precipitation, and variations in neutral density in the lower thermosphere. Among these processes, the geocorona and particle precipitation could show negative correlation, while the GCRs and neutral density could show positive correlation with solar activities.
机译:我们调查了,第一次,长期(1976 - 2010)反射的高度的变化吱声气氛基于频率很低(甚低频)观察在鹿儿岛,日本。结果显示太阳周期的影响在夜间低电离层为低中纬度地区。分析了每一个眼睛安静的天通过使用一个月在三个太阳周期自动光谱拟合过程评估截止频率。偏差的反射高度是95.9公里分别和±3.1公里。时间变化的反射高度13.3, 3.2, 1.3, 1.0, 0.6, 0.5年。变化在反射高度不吱声显示简单anticorrelation与太阳活动。大气干扰之间的相关系数反射高度和太阳黑子数是0.03在整个三个太阳周期。变换分析成功表示0.5 - -1.5年~ 10年的变化固有模态函数(IMF)。国际货币基金组织(IMF) ~ 10年了积极的变化相关性与太阳黑子数目和消极的相关性与银河宇宙射线(GCRs)。假设这些变化在吱声反射高度耦合引起的几个电离效应在D和E等地区,影响地冕,GCRs粒子沉淀,中性的变化密度较低的热大气层。过程中,地冕和粒子降水可能显示负相关,而GCRs和中性密度可以显示与太阳活动正相关。

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