首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Jupiter high-energy/high-latitude electron environment from Juno's JEDI and UVS science instrument background noise
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Jupiter high-energy/high-latitude electron environment from Juno's JEDI and UVS science instrument background noise

机译:Jupiter高能量/高纬度电子环境来自朱诺的Jedi和UVS科学仪器背景噪音

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摘要

Spectral modeling combining the Jupiter Energetic-particle Detector Instrument (JEDI) differential flux and simulations of the Ultraviolet Spectrograph (UVS) background noise data were used to obtain the integral electron fluxes for energies of > 1 MeV and > 6 MeV at points along the Juno spacecraft's trajectory. These high energy electrons are understood to dominate the Jovian energetic particle environment and their characterization for energies above 1 MeV is a critical aspect of understanding particle acceleration in Giant Planet magnetospheres. The measurements will reduce uncertainties in existing Jovian radiation models, which will enable a reduction in margins when designing future missions to Jupiter. These high energy data will also assist in better understanding the Juno instruments' responses to the radiation environment and help to avoid misinterpreting radiation contamination as a true signal. Results of the analysis are compared with measurements from Pioneer 11 as well as with predictions using the Galileo Interim Radiation Electron (GIRE3) model.
机译:组合木星精力粒子探测器仪(JEDI)差分通量和紫外光谱仪(UVS)背景噪声数据的谱建模用于获得能量的积分电子磁通量> 1 MEV的能量> 6 MeV沿着Juno的点。宇宙飞船的轨迹。这些高能量电子应理解为主导Jovian精力粒子环境,并且它们对1 MeV以上的能量的表征是理解巨型行星磁光学中的粒子加速度的关键方面。测量值将减少现有的Jovian辐射模型中的不确定性,这将使在将未来的任务设计到木星时,可以降低边距。这些高能量数据还将有助于更好地理解juno仪器对辐射环境的回应,并有助于避免将辐射污染污染为真实信号。将分析结果与来自先驱11的测量结果以及使用伽利略临时辐射电子(Gire3)模型的预测。

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