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首页> 外文期刊>The Astrophysical journal >ON THE SIGNIFICANCE OF THE CONTRIBUTION OF MULTIPLE-ELECTRON CAPTURE PROCESSES TO COMETARY X-RAY EMISSION
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ON THE SIGNIFICANCE OF THE CONTRIBUTION OF MULTIPLE-ELECTRON CAPTURE PROCESSES TO COMETARY X-RAY EMISSION

机译:关于多电子捕获过程对X射线辐射的贡献的意义

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We report laboratory studies of the role played by multiple-electron capture (MEC) in solar wind-induced cometary X-ray emission. Collisions of Ne~(10+) with He, Ne, Ar, CO, and CO_2 have been investigated by means of the traditional noncoincident-singles X-ray spectroscopy in addition to the triple-coincidence measurements of X-rays, scattered projectile, and target recoil ions for the atomic targets. The coincidence measurements enable one to reduce the singles X-ray spectra into partial spectra originating in single-electron capture (SEC) and MEC collisions. The measurements provide unequivocal evidence of the significant role played by MEC and strongly suggest that models based solely on SEC are bound to yield erroneous conclusions on the solar wind composition and velocities and on cometary atmospheres. The experimental relative importance of MEC collisions is compared with the molecular classical-over-the-barrier model, the classical trajectory Monte Carlo technique, and the multichannel Landau-Zener method, calculations that can qualitatively reproduce the experimental trends.
机译:我们报告实验室研究中多电子捕获(MEC)在太阳风引起的彗星X射线发射中的作用。除了使用X射线,散射弹丸,X射线和X射线的三次重合测量之外,还通过传统的非重合单X射线光谱技术研究了Ne〜(10+)与He,Ne,Ar,CO和CO_2的碰撞。和目标反冲离子为原子目标。一致性测量使人们能够将单次X射线光谱还原为源自单电子捕获(SEC)和MEC碰撞的部分光谱。这些测量结果清楚地证明了MEC发挥了重要作用,并强烈建议仅基于SEC的模型必然会得出关于太阳风成分和速度以及彗星大气的错误结论。将MEC碰撞的实验相对重要性与分子经典越障模型,经典轨迹蒙特卡洛技术和多通道Landau-Zener方法进行了比较,这些计算可以定性地再现实验趋势。

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