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Charge Exchange X-Ray Emission: Astrophysical Observations And Potential Diagnostics

机译:电荷交换X射线排放:天体物理观察和潜在诊断

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Interest in astrophysical sources of charge exchange X-rays has been growing steadily since the discovery of X-ray emission from the comet Hyakutake with ROSAT in 1996. Since then, charge exchange has been observed between solar wind ions and neutrals in the geocorona and in the atmospheres of Mars and Jupiter. Charge exchange with interstellar neutrals within the heliosphere between solar wind ions and neutral hydrogen and helium from the interstellar medium is now acknowledged as contributing a considerable (although currently unknown) fraction of the soft X-ray background. We make a brief survey of the heliospheric, Galactic, and extragalactic systems in which charge exchange has been observed or is predicted to take place. Experiments measuring velocity dependent cross-section and line ratios for Lyman-series lines and He-like triplets are needed to check current theoretical models of charge exchange emission and aid interpretation of observations. We point out a number of systems that are of astrophysical interest that could be the subject of future laboratory investigations, particularly velocity dependent line ratios of the X-ray emission produced by charge exchange between highly ionized common elements (such as O, C, Ne, and Fe) and atomic hydrogen and helium. To begin to address the need for laboratory data we have measured velocity dependent Ly-series line ratios for C~(6+) ions interacting with H_2, He, and Kr gas targets at Oak Ridge National Laboratory's Ion-Atom Merged-Beams Apparatus
机译:自1996年在1996年与罗斯特乐队杂体的X射线发射发现X射线发射以来,对天体物理源的兴趣已经稳步增长。从那时起,在Geocorona的太阳风离子和中性之间观察到了电荷交换火星和木星的大气。现在承认,来自太阳脉缠绕和中性氢气和中性氢气和中性氢气和中性氢气和中性氢气和中性氢气和氦的氦之间的电荷交换是有助于柔软的X射线背景的相当大的(虽然目前未知)的一部分。我们简要介绍了对赫里波层,银河系和紫外线系统,其中预计已经观察到电荷交换。实验测量速度依赖性横截面和线路比率,需要检查电荷交换排放的当前理论模型和援助解释。我们指出了许多系统的天体物理兴趣,可能是未来实验室调查的主题,特别是在高电离的普通元素(例如O,C,NE)之间的电荷交换产生的X射线发射的速度依赖性线比和Fe)和原子氢和氦气。要开始解决实验室数据的需求,我们对橡树岭国家实验室的离子原子合并梁装置的速度相关的C〜(6+)离子的速度依赖性Ly系列线比与H_2,HE和KR气体目标相互作用

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