论文标题

恒星能量粒子在湍流和CME散发的恒星风中的恒星风

Stellar Energetic Particle Transport in the Turbulent and CME-disrupted Stellar Wind of AU~Microscopii

论文作者

Fraschetti, F., Alvarado-Gómez, J. D., Drake, J. J., CoheN, O., Garraffo, C.

论文摘要

活性恒星发出的能量颗粒可能会在天然磁化的等离子体湍流中传播,并因先前的能量冠状质量弹出(CME)而破坏。我们通过冠状耀斑或行进的冲击进行了各种距离生产的$ \ sim $ gev质子的测试片段模拟。颗粒在大规模静止的三维磁场中传播,并从测得的磁力图中重建了恒星风,在通过$ 10^{36} $ 〜ERG动力学能量CME}之后,{在相同的恒星环境中。在这两种情况下,都将各向同性功率谱的磁波动叠加到大型恒星磁场上,并检查了颗粒传播到两个无数确认的行星。在静止的情况下,磁场将颗粒集中在黄道平面附近的两个区域上。 CME通过后,封闭的磁场线保持膨胀,重新移动的磁场保持高度压缩,从而收缩了颗粒的散射平均自由路径。在CME-LOBES的传播方向上,随后的EP通量被抑制。即使对于从黄道平面传播的CME前部,沿行星轨道的EP通量也高度波动和峰值在$ \ sim 2 -3 $的峰值上,比地球平均太阳值高的数量级高,无论是在静态和静物后情况下。

Energetic particles emitted by active stars are likely to propagate in astrospheric magnetized plasma turbulent and disrupted by the prior passage of energetic Coronal Mass Ejections (CMEs). We carried out test-particle simulations of $\sim$ GeV protons produced at a variety of distances from the M1Ve star AU~Microscopii by coronal flares or travelling shocks. Particles are propagated within the large-scale quiescent three-dimensional magnetic field and stellar wind reconstructed from measured magnetograms, and { within the same stellar environment following passage of a $10^{36}$~erg kinetic energy CME}. In both cases, magnetic fluctuations with an isotropic power spectrum are overlayed onto the large scale stellar magnetic field and particle propagation out to the two innnermost confirmed planets is examined. In the quiescent case, the magnetic field concentrates the particles onto two regions near the ecliptic plane. After the passage of the CME, the closed field lines remain inflated and the re-shuffled magnetic field remains highly compressed, shrinking the scattering mean free path of the particles. In the direction of propagation of the CME-lobes the subsequent EP flux is suppressed. Even for a CME front propagating out of the ecliptic plane, the EP flux along the planetary orbits highly fluctuates and peaks at $\sim 2 -3$ orders of magnitude higher than the average solar value at Earth, both in the quiescent and the post-CME cases.

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