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Hubble Space Telescope Goddard high-resolution spectrograph H2 rotational spectra of Jupiter's aurora

机译:哈勃太空望远镜戈达德高分辨率光谱仪的木星极光H2旋转光谱

摘要

We have observed the emission spectrum from Jupiter's north auroral atmosphere with 0.57 A spectral resolution over 1204-1241 A. Bright emissions have been detected from 50 deg to 60 deg latitude at locations consistent with 6 to 30 R [SUB]J[/SUB] auroral ovals, with much fainter emissions away form the auroral ovals. The emission spectrum is well fitted by both laboratory spectra and theoretical models of optically thin electron excited H2, with added Doppler-broadened Lyman Alpha emission. The observed Lyman Alpha emission wings extend more than 1 A from line center and appear correlated in strength with the H2 brightness. Individual rotational lines in the H2 Werner band system are resolved, allowing a determination of the H2 rotational temperature at the altitude of the emission. We derive best-fit temperatures from 400-450 to 700-750 K, with the auroral emission layer temperature changing either across the auroral oval or over several days' time. These observations demonstrate for the first time the ability to measure the observed rapid H2 temperature variations across Jupiter's auroral atmosphere.
机译:我们观察到木星北极光大气的发射光谱在1204-1241 A范围内具有0.57 A的光谱分辨率。在与6至30 R [SUB] J [/ SUB]一致的位置,从纬度50度到60度检测到明亮的发射极光椭圆形,极微弱的发射消失了。发射光谱通过光学薄电子激发的H2的实验室光谱和理论模型很好地拟合,并添加了多普勒增宽的Lyman Alpha发射。观察到的Lyman Alpha发射翼从线中心延伸超过1 A,并且看起来强度与H2亮度相关。解析H2 Werner带系统中的各个旋转线,从而可以确定发射高度处的H2旋转温度。我们得出的最合适温度为400-450至700-750 K,极光发射层的温度在整个极光椭圆上或几天内都会发生变化。这些观测结果首次证明了测量木星极光大气中观测到的快速H2温度变化的能力。

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