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首页> 外文期刊>The Astrophysical journal >CORRECTING FOR INTERPLANETARY SCATTERING IN VELOCITY DISPERSION ANALYSIS OF SOLAR ENERGETIC PARTICLES
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CORRECTING FOR INTERPLANETARY SCATTERING IN VELOCITY DISPERSION ANALYSIS OF SOLAR ENERGETIC PARTICLES

机译:太阳高能粒子速度色散分析中星际散射的校正

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摘要

To understand the origin of Solar Energetic Particles (SEPs), we must study their injection time relative to other solar eruption manifestations. Traditionally the injection time is determined using the Velocity Dispersion Analysis (VDA) where a linear fit of the observed event onset times at 1 AU to the inverse velocities of SEPs is used to derive the injection time and path length of the first-arriving particles. VDA does not, however, take into account that the particles that produce a statistically observable onset at 1 AU have scattered in the interplanetary space. We use Monte Carlo test particle simulations of energetic protons to study the effect of particle scattering on the observable SEP event onset above pre-event background, and consequently on VDA results. We find that the VDA results are sensitive to the properties of the pre-event and event particle spectra as well as SEP injection and scattering parameters. In particular, a VDA-obtained path length that is close to the nominal Parker spiral length does not imply that the VDA injection time is correct. We study the delay to the observed onset caused by scattering of the particles and derive a simple estimate for the delay time by using the rate of intensity increase at the SEP onset as a parameter. We apply the correction to a magnetically well-connected SEP event of 2000 June 10, and show it to improve both the path length and injection time estimates, while also increasing the error limits to better reflect the inherent uncertainties of VDA.
机译:要了解太阳高能粒子(SEP)的起源,我们必须研究它们相对于其他太阳爆发表现的注入时间。传统上,注入时间是使用速度色散分析(VDA)确定的,其中,在1 AU处观察到的事件开始时间与SEP的逆速度的线性拟合用于得出注入时间和第一个到达粒子的路径长度。但是,VDA没有考虑到在1 AU处产生统计上可观察到的开始的粒子已经散布在行星际空间中。我们使用高能质子的蒙特卡罗测试粒子模拟来研究粒子散射对事件前背景以上可观察到的SEP事件发作以及因此对VDA结果的影响。我们发现,VDA结果对事件前和事件粒子光谱的特性以及SEP注入和散射参数敏感。特别是,获得的VDA路径长度接近标称Parker螺旋长度,并不表示VDA注入时间正确。我们研究了由颗粒散射引起的到观察到的发作的延迟,并通过使用SEP发作时强度增加的速率作为参数,得出了延迟时间的简单估计。我们将校正应用于2000年6月10日的磁连接良好的SEP事件,并显示它可以改善路径长度和注入时间估计,同时还可以增加误差范围以更好地反映VDA的固有不确定性。

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