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2篇 您的检索式:作者名="S.Barabash"
    题名 作者 年代 出处 被引量
1TC-2/中性原子成像仪观测到等离子体片纵向振荡显示文摘2005年8月24日磁暴期间(Dst=-219nT),TC-2卫星上的中性原子成像仪(NUADU)观测到了绕近地等离子体片区磁力线作螺旋运动的全空间4π立体角离子通量分布.在TC-2卫星历时34min的多次穿越等离子体片过程中,多个能量离子束事件均具有绕磁力线呈现两个对称环状离子通量分布特征.在每一次穿越等离子体片过程中低频波探测器(LFEW/TC-2)都探测到了频率略高于低混杂波摸的哨声波摸合声的增强.比较离子投掷角分布与磁场,我们发现场向能量离子通量增强总伴随有等离子体片磁力线的尾向拉伸;垂直磁力线方向的能量离子通量增强却伴随有等离子体片磁力线的地向压缩,并出现总磁场强度的峰值.由于平行和垂直磁力线的离子通量增强是间歇性地交替出现,探测数据揭示了一种近地等离子体片磁力线的纵向振荡(磁力线的尾向拉伸和地向收缩)过程,这有助于在近地等离子体片区域形成离子与场的相互作用区,从而触发磁暴期间的连续极光亚暴.路立 S.McKenna-Lawlor S.Barabash 刘振兴 曹晋滨 J.Balaz K.Kudela T.L.Zhang C.M.Carr 2007科学通报2007,52,5:1
2Neutralized solar energetic particles for SEP forecasting:Feasibility study of an innovative technique for space weather applications显示文摘Energetic neutral atoms(ENAs)are produced by the neutralization of energetic ions formed by shock-accelerated gradual solar energetic particle events(SEP).These high-energy ENAs(HENAs)can reach the Earth earlier than the associated SEPs and thus can provide information about the SEPs at the lower corona.The HENA properties observed at Earth depend on the properties of the coronal mass ejection(CME)-driven shocks that accelerate the SEPs.Using a model of HENA production in a shock-accelerated SEP event,we semi-quantitatively investigate the energy-time spectrum of HENAs depending on the width,propagation speed,and direction of the shock,as well as the density and ion abundances of the lower corona.Compared to the baseline model parameters,the cases with a wider shock width angle or a higher coronal density would increase the HENA flux observed at the Earth,while the case with an Earthpropagating shock shows a softened HENA spectrum.The comparison of expected HENA fluxes in different cases with a flight-proven ENA instrument suggests that solar HENAs can feasibly be monitored with current technologies,which could provide a lead time of 2−3 hours for SEPs at a few MeV.We propose that monitoring of solar HENAs could provide a new method to forecast shock-driven SEP events that are capable of significant space weather impacts on the near-Earth environment.Xiao-Dong Wang B.Klecker G.Nicolaou S.Barabash M.Wieser P.Wurz A.Galli F.Cipriani Y.Futaana 2022Earth and Planetary Physics2022,6,1:0
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