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The crucial role of HST during the NASA Juno mission: a “Juno initiative”

机译:HST在NASA Juno任务中的关键作用:“ Juno计划”

摘要

In 2016, the NASA Juno spacecraft will initiate its one-year mission around Jupiter and become the first probe to explore the polar regions of Jupiter. The HST UV instruments (STIS and ACS) can greatly contribute to the success of the Juno mission by providing key complementary views of Jupiter’s UV aurora from Earth orbit. Juno carries an ultraviolet Spectrograph (UVS) and an infrared spectral mapper (JIRAM) that will obtain high-resolution spectral images providing the auroral counterpart to Juno’s in situ particles and fields measurements with the plasma JADE and JEDI particle detectors. The Juno mission will be the first opportunity to measure simultaneously the energetic particles at high latitude and the auroral emissions they produce. Following programmatic and technical limitations, the amount of UVS data transmitted to Earth will be severely restricted. Therefore, it is of extreme importance that HST captures as much additional information as possible on Jupiter’s UV aurora during the one-year life of the Juno mission. This white paper is a plea for a “Juno initiative” that will ensure that a sufficient number of orbits is allocated to this unique solar system mission.
机译:2016年,美国国家航空航天局(NASA)朱诺(Juno)航天器将启动围绕木星的一年飞行任务,并将成为探索木星极地地区的第一个探测器。 HST紫外线仪器(STIS和ACS)通过提供来自地球轨道的木星紫外线极光的关键补充视图,可以极大地帮助朱诺任务的成功。 Juno带有紫外线光谱仪(UVS)和红外光谱仪(JIRAM),它们将获得高分辨率的光谱图像,提供与Juno原位粒子的极光对应,并使用等离子JADE和JEDI粒子探测器进行野外测量。朱诺任务将是第一个同时测量高纬度高能粒子及其产生的极光排放的机会。受到程序和技术限制,传输到地球的UVS数据量将受到严格限制。因此,至关重要的是HST在朱诺任务执行的一年期间,捕获尽可能多的有关木星紫外线极光的附加信息。本白皮书是对“ Juno倡议”的呼吁,该倡议将确保为这一独特的太阳系任务分配足够数量的轨道。

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