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Equatorial electrojet studies from rocket and ground measurements

机译:来自火箭和地面测量的赤道电喷研究

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Combining the data of in-situ measurements of ionospheric current, Jm by rocket-borne instruments and the ground based geomagnetic H field close to the magnetic equator a linear relation has been found between the peak current density Jm and the daily range of H, (RH). This relationship has been used to convert long series of RH data into Jm. Combining Jm and the E-region peak electron density Nm, the electron velocity in the ionosphere, VE has been calculated. It is shown that after all corrections are made of the solar zenith angle variations, the ionospheric current as well as electron drift in American and Indian sectors show strong equinoctial maxima, the mean values of both the parameters are larger at American than in Indian sector. The solar cycle variation of the electrojet current is primarily due to the variations of NmE, and not due to the variations of electric field. The diurnal variation of the electric field with peak at 09-10 LT interacting with noon peak of NmE making H to peak at an hour earlier than noon. It is stressed to realise the importance of electric field in diurnal, seasonal and longitudinal variations of the equatorial electrojet current.
机译:结合火箭仪器对电离层电流J m 的现场测量数据和靠近磁赤道的地面地磁场H场,发现峰值电流密度J之间存在线性关系。 m 和H的每日范围(R H )。此关系已用于将R H 的长序列数据转换为Jm。结合J m 和E区峰值电子密度Nm,计算出电离层中的电子速度V E 。结果表明,在对太阳天顶角变化进行了所有校正之后,美国和印度地区的电离层电流以及电子漂移表现出很强的等电最大值,这两个参数的平均值在美国都比印度地区更大。电喷射电流的太阳周期变化主要是由于N m E的变化,而不是由于电场的变化。电场的峰值在09-10 LT处与N m E的正午峰相互作用,使H在比正午早一个小时达到峰值。强调认识到电场在赤道电喷电流的昼夜,季节和纵向变化中的重要性。

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