EVIDENCE OF THE EARTH’S INNER RADIATION BELTS DURING THE LOW SOLAR AND GEOMAGNETIC ACTIVITY OBTAINED WITH THE STEP-F INSTRUMENT

Q4 Physics and Astronomy Radio Physics and Radio Astronomy Pub Date : 2021-09-14 DOI:10.15407/rpra26.03.224
O. Dudnik, O. V. Yakovlev
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Abstract

Purpose: The subject of research is the spatio-temporal charged particles in the Earth’s magnetosphere outside the South Atlantic magnetic Anomaly during the 11-year cycle of solar activity minimum. The work aims at searching for and clarifying the sustained and unstable new spatial zones of enhanced subrelativistic electron fluxes at the altitudes of the low Earth orbit satellites. Design/methodology/approach: Finding and ascertainment of new radiation belts of the Earth were made by using the data analysis from the D1e channel of recording the electrons of energies of ΔEe=180–510 keV and protons of energies of ΔEp=3.5–3.7 MeV of the satellite telescope of electrons and protons (STEP-F) aboard the “CORONAS-Photon” Earth low-orbit satellite. For the analysis, the data array with the 2 s time resolution normalized onto the active area of the position-sensitive silicon matrix detector and onto the solid angle of view of the detector head of the instrument was used. Findings: A sustained structure of three electron radiation belts in the Earth’s magnetosphere was found at the low solar and geomagnetic activity in May 2009. The two belts are known since the beginning of the space age as the Van Allen radiation belts, another additional permanent layer is formed around the drift shell with the McIlwaine parameter of L = 1.65±0.05. On some days in May 2009, the new two inner radiation belts were observed simultaneously, one of those latter being recorded between the investigated sustained belt at L≈1.65 and the Van Allen inner belt at L≈2.52. Increased particle fluxes in this unstable belt have been formed with the drift shell L≈2.06±0.14. Conclusions: The new found inner radiation belts are recorded in a wide range of geographic longitudes λ, both at the ascending and descending nodes of the satellite orbit, from λ1≈150° to λ2≈290°. Separately in the Northern or in the Southern hemispheres, outside the outer edge of the outer radiation belt, at L≥7–8, there are cases of enhanced particle fl ux density in wide range of L-shells. These shells correspond to the high-latitude region of quasi-trapped energetic charged particles. Increased particle fluxes have been recorded up to the bow shock wave border of the Earth’s magnetosphere (L≈10-12). Key words: radiation belt, STEP-F instrument, electrons, magnetosphere, drift L-shell, particle flux density
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用step-f仪器获得的太阳和地磁活动低时地球内部辐射带的证据
目的:研究的主题是在太阳活动最小的11年周期内,南大西洋磁异常外地球磁层中的时空带电粒子。这项工作旨在寻找和澄清近地轨道卫星高度亚相对论电子通量增强的持续和不稳定的新空间区域。设计/方法/方法:通过使用“CORONAS Photon”地球低轨道卫星上的电子和质子卫星望远镜(STEP-F)记录能量为ΔEe=180–510 keV的电子和能量为ΔEp=3.5–3.7 MeV的质子的D1e通道的数据分析,发现和确定了地球的新辐射带。为了进行分析,使用了时间分辨率为2s的数据阵列,该数据阵列归一化到位置敏感硅矩阵探测器的有源区域和仪器探测器头部的立体视角上。研究结果:2009年5月,在太阳和地磁活动较低的时候,在地球磁层发现了一个由三个电子辐射带组成的持续结构。自太空时代开始以来,这两条带就被称为范艾伦辐射带,在漂移壳周围形成了另一个额外的永久层,McIlwaine参数为L=1.65±0.05。在2009年5月的一些日子里,同时观测到了两条新的内部辐射带,其中一条记录在所研究的L≈1.65的持续辐射带和L≈2.52的范艾伦内部辐射带之间。漂移壳层L≈2.06±0.14在这个不稳定带中形成了增加的粒子通量。结论:新发现的内辐射带记录在卫星轨道上升和下降节点的宽地理经度λ范围内,从λ1≈150°到λ2≈290°。在北半球或南半球,在外辐射带外缘外,当L≥7-8时,在大范围的L壳层中存在颗粒流密度增强的情况。这些壳层对应于准俘获高能带电粒子的高纬度区域。在地球磁层的弓形冲击波边界(L≈10-12),已经记录到粒子通量的增加。关键词:辐射带、STEP-F仪器、电子、磁层、漂移L壳层、粒子通量密度
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来源期刊
Radio Physics and Radio Astronomy
Radio Physics and Radio Astronomy Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
0.60
自引率
0.00%
发文量
18
审稿时长
8 weeks
期刊最新文献
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