2016年9月1日和2021年6月10日日食期间哈尔科夫上空电离层等离子体运动的观测

L. Emelyanov
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摘要

本文介绍了2016年9月1日发生在哈尔科夫磁共轭区(马达加斯加岛附近,37°35′S, 47°26′E)的日偏食(占太阳面积的37.8%)和2021年6月10日哈尔科夫日偏食(49°36′N, 36°18′E)期间电离层等离子体在乌克兰上空的运动观测结果。这些电离层观测使用了哈尔科夫非相干散射雷达和数字电离层探空仪。2016年9月1日,观测到电离层等离子体漂移速度垂直分量的时间变化,这种变化可能是由南半球日食引起的,与地球南北半球磁共轭区电离层通过磁层相互作用的过程有关。这些变化表现在乌克兰上空电离层等离子体向下运动速度的绝对值在日食最大相位后的磁化共轭区极值42分钟内减小。这种影响与哈尔科夫上空的日食通常造成的影响相反。速度偏差开始时间与日食最大相位重合,结束时间为日食最大瞬间后1 h 16 min。速度偏差幅值随高度增加而增大,在200 ~ 580 km高度达到5 ~ 45 m/s。在速度偏差的同时,临界频率的时间变化也有类似的偏差,最大减小0.7 MHz,电离层F2峰高的时间变化最大增大30 km。2021年6月10日,在180-500公里的研究高度上,电离层对太阳遮挡较小(直径0.112,面积0.044)的日偏食的响应非常微弱或根本没有,与之前在哈尔科夫观测到的日食结果相比,太阳圆盘面积遮挡较大(0.31或更多)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Observation of Ionospheric Plasma Motion over Kharkiv During Solar Eclipses on September 1, 2016, and June 10, 2021
The results of observations of the motion of the ionospheric plasma over Ukraine during the partial (up to 37.8% of the Sun's area) solar eclipse on September 1, 2016, which occurred in the magnetically conjugate region for Kharkiv (near the island of Madagascar, 37° 35’ S, 47° 26’ E), and during June 10, 2021 partial (4.4% in area) solar eclipse over Kharkiv (49° 36’ N, 36° 18’ E) are presented. The Kharkiv incoherent scatter radar and digital ionosondes were used for these ionospheric observations. On September 1, 2016, changes were observed in the temporal variations of the vertical component of the ionospheric plasma drift velocity, which probably caused by the solar eclipse in the southern hemisphere and associated with the processes of interaction through the magnetosphere between the ionospheres of the magnetically conjugate regions of the Earth's southern and northern hemispheres. These changes were manifested in a decrease in the absolute value of the velocity of the downward motion of plasma in the ionosphere over Ukraine with an extremum 42 min after the maximum phase of the solar eclipse in the magnetically conjugate region. This effect is opposite to effect that generally caused by the solar eclipse over Kharkiv. The beginning of the velocity deviation coincided in time with the maximum phase of the solar eclipse, and the end was 1 h 16 min after the instant of greatest eclipse. The velocity deviation amplitude increased with altitude and amounted to 5–45 m/s at altitudes of 200–580 km. The velocity deviation was accompanied by a similar deviation in the temporal variation of the critical frequency with a maximum decrease of 0.7 MHz and in the temporal variation of ionospheric F2 peak height with a maximum increase of 30 km. The response of the ionosphere to the partial solar eclipse on June 10, 2021 with a small obscuration of the Sun (0.112 in diameter, 0.044 in area) at the studied altitudes of 180–500 km was very weak or absent at all, in contrast to results of previous observations of solar eclipses over Kharkiv with greater obscuration of the Sun's disk area (0.31 and more).
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