首页> 外文期刊>Journal of geophysical research. Planets >On lunar exospheric column densities and solar wind access beyond the terminator fromROSAT soft X-ray observations of solar wind charge exchange
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On lunar exospheric column densities and solar wind access beyond the terminator fromROSAT soft X-ray observations of solar wind charge exchange

机译:通过ROSAT的X射线太阳风电荷交换软X射线观测,得出月球大气圈的柱密度和终止子以外的太阳风

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We analyze the R?ntgen satellite (ROSAT) position sensitive proportional counter soft X-ray image of the Moon taken on 29 June 1990 by examining the radial profile of the surface brightness in three wedges: two 19? wedges (one north and one south) 13-32? off the terminator toward the dark side and one wedge 38? wide centered on the antisolar direction. The radial profiles of both the north and the south wedges show significant limb brightening that is absent in the 38? wide antisolar wedge. An analysis of the soft X-ray intensity increase associated with the limb brightening shows that its magnitude is consistent with that expected due to solar wind charge exchange (SWCX) with the tenuous lunar atmosphere based on lunar exospheric models and hybrid simulation results of solar wind access beyond the terminator. Soft X-ray imaging thus can independently infer the total lunar limb column density including all species, a property that before now has not been measured, and provide a large-scale picture of the solar wind-lunar interaction. Because the SWCX signal appears to be dominated by exospheric species arising from solar wind implantation, this technique can also determine how the exosphere varies with solar wind conditions. Now, along with Mars, Venus, and Earth, the Moon represents another solar system body at which SWCX has been observed.
机译:我们通过检查三个楔形物的表面亮度的径向分布,来分析1990年6月29日拍摄的R'ntgen卫星(ROSAT)位置敏感的比例计数器软X射线月球照片,其中三个楔形物是两个19?楔子(一北一南)13-32?终结者朝着黑暗的一侧和一个楔子38?以反太阳方向为中心。南北楔形的径向剖面都显示出明显的肢体变亮,这在38?宽的反日光楔。根据月球大气层模型和太阳风混合模拟结果,对与肢体变亮相关的软X射线强度增加的分析表明,其强度与预期的值一致,这是由于与微弱的月球大气层进行的太阳风电荷交换(SWCX)超出终结者的访问权限。因此,软X射线成像可以独立地推断出包括所有物种在内的总月肢柱密度,而该特性在此之前尚未得到测量,并且可以提供太阳风-月球相互作用的大规模图像。由于SWCX信号似乎是由太阳风植入引起的圈外物种所主导,因此该技术还可以确定圈外层如何随太阳风条件而变化。现在,月亮与火星,金星和地球一起代表了另一个观测到SWCX的太阳系天体。

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