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Variation of Jupiter's aurora observed by Hisaki/EXCEED: 1. Observed characteristics of the auroral electron energies compared with observations performed using HST/STIS

机译:Hisaki / EXCEED观测到的木星极光的变化:1.与使用HST / STIS进行的观测相比,观测到的极光电子能量特征

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摘要

Temporal variation of Jupiter's northern aurora is detected using the Extreme Ultraviolet Spectroscope for Exospheric Dynamics (EXCEED) on board JAXA's Earth-orbiting planetary space telescope Hisaki. The wavelength coverage of EXCEED includes the H2 Lyman and Werner bands at 80–148 nm from the entire northern polar region. The prominent periodic modulation of the observed emission corresponds to the rotation of Jupiter's main auroral oval through the aperture, with additional superposed −50%–100% temporal variations. The hydrocarbon color ratio (CR) adopted for the wavelength range of EXCEED is defined as the ratio of the emission intensity in the long wavelength range of 138.5–144.8 nm to that in the short wavelength range of 126.3–130 nm. This CR varies with the planetary rotation phase. Short- (within one planetary rotation) and long-term (> one planetary rotation) enhancements of the auroral power are observed in both wavelength ranges and result in a small CR variation. The occurrence timing of the auroral power enhancement does not clearly depend on the central meridian longitude. Despite the limitations of the wavelength coverage and the large field of view of the observation, the auroral spectra and CR-brightness distribution measured using EXCEED are consistent with other observations.
机译:利用JAXA绕地球运行的行星太空望远镜Hisaki上的用于大气动力学的极紫外光谱仪(EXCEED),可以检测到木星北部极光的时间变化。 EXCEED的波长范围包括距整个北极地区80-148 nm处的H2莱曼和Werner波段。观测到的发射的显着周期性调制对应于木星主极光椭圆通过孔径的旋转,并附加了−50%–100%的叠加时间变化。 EXCEED波长范围内采用的烃色比(CR)定义为长波长范围138.5–144.8 nm与短波长范围126.3–130 nm的发射强度之比。该CR随行星旋转相位而变化。在两个波长范围内都观察到了极光功率的短期(一次行星旋转内)和长期(>一次行星旋转)增强,并导致较小的CR变化。极光增强的发生时间并不明显取决于中央子午线经度。尽管波长覆盖范围有限且观测范围较大,但使用EXCEED测量的极光光谱和CR亮度分布与其他观测结果一致。

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