首页> 外文期刊>The Astrophysical Journal. Letters >Interplanetary Type II Radio Bursts from Wind/WAVES and Sustained Gamma-Ray Emission from Fermi/LAT: Evidence for Shock Source
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Interplanetary Type II Radio Bursts from Wind/WAVES and Sustained Gamma-Ray Emission from Fermi/LAT: Evidence for Shock Source

机译:行星际类型II无线电突发来自风/波和Fermi / Lat的持续伽马射线排放:震源的证据

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摘要

We present quantitative evidence that interplanetary type II radio bursts and sustained gamma-ray emission (SGRE) events from the Sun are closely related. Out of about 30 SGRE events reported in Share et al. we consider 13 events that had a duration exceeding ~5 hr to exclude any flare-impulsive phase gamma-rays. The SGRE duration also has a linear relation with the ending frequency of the bursts. The synchronism between the ending times of SGRE and the type II emission strongly supports the idea that the same shock accelerates electrons to produce type II bursts and protons (>300 MeV) that propagate from the shock to the solar surface to produce SGRE via pion decay. The acceleration of high-energy particles is confirmed by the associated solar energetic particle (SEP) events detected at Earth and/or at the Solar Terrestrial Relations Observatory spacecraft. Furthermore, the presence of >300 MeV protons is corroborated by the fact that the underlying coronal mass ejections (CMEs) had properties identical to those associated with ground-level enhancement events: they had speeds of >2000 kms~(-1) and all were full-halo CMEs. Many SEP events did not have detectable flux at Earth in the >300 MeV energy channels, presumably because of poor magnetic connectivity.
机译:我们提出了定量证据,即截止行动类型的无线电爆发和持续的伽马射线排放(SGRE)来自太阳的事件密切相关。在分享等人中报告了大约30个SGRE事件。我们考虑了13个持续时间超过〜5小时的事件,以排除任何爆发脉冲阶段伽马射线。 SGRE持续时间还具有与突发结束频率的线性关系。 SGRE和II型发射的结束时间之间的同步强烈支持相同的冲击加速电子产生II型突发和质子(> 300meV),这些突发和质子(> 300mev)从冲击到太阳能表面传播以通过π衰减产生SGRE的SGRE 。通过在地球和/或太阳能陆地关系天文台航天器处检测到的相关太阳能粒子(SEP)事件确认高能粒子的加速度。此外,通过潜在的冠状质量喷射(CMES)具有与与地面级增强事件相关的性质相同的性质的事实来证实> 300mEV质子的存在:它们具有> 2000公里〜(-1)的速度和所有是全晕CMES。许多SEP事件在> 300 MeV能量通道中没有可检测的通量,可能是由于磁性连接不良。

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