M. Yaşar
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摘要

电离层是地球大气层的一部分,从75公里延伸到1000公里。太阳是根据电子密度塑造和划分电离层的主要因素。因此,研究和检查太阳引起的事件对了解电离层的结构具有重要意义。日食是引起电离层突然和中等尺度变化的最重要的太阳引起事件之一。2006年3月29日的日食在一些地方被观测为日全食,在一些地方被观测为日偏食。有记录的日偏食地区之一是乌克兰的哈尔科夫。在这项研究中,根据2006年3月29日哈尔科夫市日食期间的高度(187 km)和当地时间,研究了电离层反应过程之一的“O+ + N2”碰撞的反应动力学变化,如速率常数和截面。结果表明,反应速率常数的变化与温度的变化相似,但碰撞截面的变化没有相似之处。根据这项研究获得的另一个结果,已经确定使用基于实验的源,如哈尔科夫非相干散射雷达,将在研究日食对电离层的影响方面提供更有效的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
‘O+ + N2’ ÇARPIŞMASINA AİT REAKSİYON PARAMETRELERİNİN GÜNEŞ TUTULMASINA TEPKİSİ
The ionosphere is the part of the earth's atmosphere that extends from about 75 km to 1000 km. The sun is the main factor in shaping and dividing the ionosphere according to electron density. Therefore, the investigation and examination of solar-induced events is of great importance in understanding the structure of the ionosphere. The solar eclipses are one of the most important solar-induced events that cause sudden and medium-scale changes on the ionosphere. The solar eclipse of 29 March 2006 was observed as a total eclipse in some places and as a partial eclipse in some places. One of the regions recorded as a partial eclipse is Kharkov/Ukraine. In this study, the variations of reaction dynamics such as rate constant and cross section of the ‘O+ + N2’ collision, which is one of the ionosphere reaction processes, were investigated according to altitude (187 km) and local time during the 29 March 2006 solar eclipse over the city of Kharkov. The findings revealed that the changes in the reaction rate constant were similar to the changes in temperature, but the same similarities were not observed in the collision cross-section changes. According to another result obtained from this study, it has been determined that the use of experimental-based sources such as Kharkov incoherent scatter radar will give more effective results in investigating the effects of solar eclipses on the ionosphere.
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