论文标题

使用前瞻性X射线极化任务探测太阳耀斑加速的电子分布

Probing solar flare accelerated electron distributions with prospective X-ray polarimetry missions

论文作者

Jeffrey, Natasha L. S., Saint-Hilaire, Pascal, Kontar, Eduard P.

论文摘要

太阳耀斑电子加速度是一个极其有效的过程,但是加速的方法却没有很好地约束。两个必需的诊断:电子各向异性(与引导磁场的速度角)和高能量截止(加速条件产生的最高能量电子:机制,空间范围,时间),是重要的数量,可以帮助限制阳光下的电子加速度,但都确定了。在这里,使用电子和X射线传输模拟来解释碰撞和非碰撞传输过程,例如湍流散射和X射线反照率,我们表明X射线极化可用于限制加速电子分布和最能量的加速电子的各向异性。此外,我们表明,前瞻性任务,例如Cubesat Missions没有成像信息,可以与此类模拟一起使用以确定这些参数。我们得出的结论是,对耀斑加速过程的更全面了解将来自能够共同进行X射线通量和极化光谱测量的任务。尽管高度期望成像偏振法,但我们证明没有成像的光光线计也可以对电子各向异性和高能量截止构成强大的约束。

Solar flare electron acceleration is an extremely efficient process, but the method of acceleration is not well constrained. Two of the essential diagnostics: electron anisotropy (velocity angle to the guiding magnetic field) and the high energy cutoff (highest energy electrons produced by the acceleration conditions: mechanism, spatial extent, time), are important quantities that can help to constrain electron acceleration at the Sun but both are poorly determined. Here, using electron and X-ray transport simulations that account for both collisional and non-collisional transport processes such as turbulent scattering, and X-ray albedo, we show that X-ray polarization can be used to constrain the anisotropy of the accelerated electron distribution and the most energetic accelerated electrons together. Moreover, we show that prospective missions, e.g. CubeSat missions without imaging information, can be used alongside such simulations to determine these parameters. We conclude that a fuller understanding of flare acceleration processes will come from missions capable of both X-ray flux and polarization spectral measurements together. Although imaging polarimetry is highly desired, we demonstrate that spectro-polarimeters without imaging can also provide strong constraints on electron anisotropy and the high energy cutoff.

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