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X-ray probes of Jupiter's auroral zones, Galilean moons, and the Io plasma torus

机译:木星的X射线探头的木星的极光区,加里利利亚卫星和IO等离子圆环

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Remote observations from the Earth orbiting Chandra X-ray Observatory and the XMM-Newton Observatory have shown the the Jovian system is a rich and complex source of x-ray emission. The planet's auroral zones and its disk are powerful sources of x-ray emission, though with different origins. Chandra observations discovered x-ray emission from the Io plasma torus and from the Galilean moons Io, Europa, and possibly Ganymede. The emission from the moons is due to bombardment of their surfaces by highly energetic magnetospheric protons, and oxygen and sulfur ions, producing fluorescent x-ray emission lines from the elements in their surfaces against an intense background continuum. Although very faint when observed from Earth orbit, an imaging x-ray spectrometer in orbit around the icy Galilean moons would provide a detail mapping of the elmental composition in their surfaces. Here we examine the necessary characteristics of such an instrument and the challenges it would face in the extreme radiation environment in which it would have to survive and operate. Such an instrument would have the ultimate goal of providing detailed high-resolution maps of the elemental abundances of the surfaces of Jupiter's icy moons and Io, as well as detailed study of the x-ray mission from the Io plasma torus, Jupiter's auroral zones, and the planetary disk.
机译:从地球轨道轨道X射线观测台和XMM-Newton天文台的远程观测显示,Jovian系统是一种丰富而复杂的X射线排放来源。行星的极光区及其磁盘是强大的X射线排放来源,但同时具有不同的起源。 Chandra观察发现IO等离子圆环的X射线排放,来自Galilan Moons Io,Europa,以及可能的甘德。来自卫星的排放是由于高能量磁磁体质子和氧和硫离子的轰击,从而产生从它们表面中的元素的荧光X射线排放线对抗强烈的背景连续体。虽然当从地球轨道观察时非常微弱,但冰冷的伽利岩卫星周围的轨道中的成像X射线光谱仪将提供细化组合物在其表面中的细节映射。在这里,我们检查这种仪器的必要特征以及它将面临的挑战在极端的辐射环境中,它必须生存和运作。这样的仪器将具有提供Jupiter冰冷的Moons和IO的表面的元素丰富的详细高分辨率映射的最终目标,以及从Io等离子圆环,木星的极光区的X射线使命的详细研究和行星盘。

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