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The free escape continuum of diffuse ions upstream of the Earth's quasi-parallel bow shock

机译:准平行弓形激波上游的弥散离子的自由逃逸连续体

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摘要

The Earth's bow shock is very efficient in accelerating ions out of the incident solar wind distribution to high energies (≈ 200 keV/e). Fluxes of energetic ions accelerated at the quasi-parallel bow shock, also known as diffuse ions, are best represented by exponential spectra in energy/charge, which require additional assumptions to be incorporated into these model spectra. One of these assumptions is a so-called "free escape boundary" along the interplanetary magnetic field into the upstream direction. Locations along the IBEX orbit are ideally suited for in situ measurements to investigate the existence of an upstream free escape boundary for bow shock accelerated ions. In this study we use 2 years of ion measurements from the background monitor on the IBEX spacecraft, supported by ACE solar wind observations. The IBEX Background Monitor is sensitive to protons > 14 keV, which includes the energy of the maximum flux for diffuse ions. With increasing distance from the bow shock along the interplanetary magnetic field, the count rates for diffuse ions stay constant for ions streaming away from the bow shock, while count rates for diffuse ions streaming toward the shock gradually decrease from a maximum value to ~1/e at distances of about 10 RE to 14 RE. These observations of a gradual decrease support the transition to a free escape continuum for ions of energy >14 keV at distances from 10 RE to 14 RE from the bow shock.
机译:地球的弓激波非常有效地将离子从入射的太阳风分布加速到高能量(≈200 keV / e)。在准平行弓形激波中加速的高能离子通量(也称为扩散离子)最好用能量/电荷的指数谱表示,这需要将其他假设合并到这些模型谱中。这些假设之一是沿行星际磁场进入上游方向的所谓“自由逸出边界”。沿着IBEX轨道的位置非常适合于原位测量,以研究弓形激振加速离子的上游自由逸出边界的存在。在这项研究中,我们使用了IBEX航天器上背景监测器进行的两年离子测量,并得到了ACE太阳风观测的支持。 IBEX背景监测器对大于14 keV的质子敏感,其中包括扩散离子的最大通量能量。随着沿行星际磁场与弓形冲击距离的增加,远离弓形冲击流的离子的弥散离子计数率保持不变,而朝向冲击流扩散的离子的计数率从最大值逐渐减小至〜1 / e在大约10 RE至14 RE的距离处。这些逐渐减小的观察结果证明,从弓形冲击起,从10 RE到14 RE的距离,能量大于14 keV的离子过渡到自由逸出连续体。

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