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Relativistic Electron Acceleration and Decay Time Scales in the Inner and Outer Radiation Belts: SAMPEX

机译:内辐射带和外辐射带的相对论电子加速和衰减时间尺度:SAMPEX

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摘要

High-energy electrons have been measured systematically in a low-altitude (520 × 675 km), nearly polar (inclination = 82°) orbit by sensitive instruments onboard the Solar, Anomalous, and Magnetospheric Particle Explorer (SAMPEX). Count rate channels with electron energy thresholds ranging from 0.4 MeV to 3.5 MeV in three different instruments have been used to examine relativistic electron variations as a function of L-shell parameter and time. A long run of essentially continuous data (July 1992–July 1993) shows substantial acceleration of energetic electrons throughout much of the magnetosphere on rapid time scales. This acceleration appears to be due to solar wind velocity enhancements and is surprisingly large in that the radiation belt “slot” region often is filled temporarily and electron fluxes are strongly enhanced even at very low L-values (L ∼ 2). A superposed epoch analysis shows that electron fluxes rise rapidly for 2.5 ≲ L ≲ 5. These increases occur on a time scale of order 1–2 days and are most abrupt for L-values near 3. The temporal decay rate of the fluxes is dependent on energy and L-value and may be described by J = Ke-t/to with to ≈ 5–10 days. Thus, these results suggest that the Earth's magnetosphere is a cosmic electron accelerator of substantial strength and efficiency.
机译:高能电子已通过太阳,反常和磁层粒子探测器(SAMPEX)上的敏感仪器在低空(520×675 km),近极性(倾斜= 82°)轨道上进行了系统测量。在三种不同的仪器中,电子能量阈值范围从0.4 MeV到3.5 MeV的计数速率通道已用于检查相对论电子随L壳参数和时间的变化。长期的基本连续数据(1992年7月至1993年7月)显示,在整个时间范围内,整个磁层中的高能电子都有明显的加速。这种加速似乎是由于太阳风速的提高而引起的,其惊人的大之处在于,即使在非常低的L值(L〜2)下,辐射带“槽”区域也经常会被临时填充,并且电子通量也会大大增强。叠加的历元分析表明,电子通量在2.5≲L≲5内迅速上升。这些增加发生在1-2天左右的时间范围内,并且对于L值接近3的情况最为突然。通量的时间衰减率取决于关于能量和L值的描述可以用J = Ke-t / to来描述,≈5-10天。因此,这些结果表明,地球磁层是具有强大强度和效率的宇宙电子加速器。

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