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A Physical Model of the Proton Radiation Belts of Jupiter inside Europa's Orbit

机译:欧罗巴轨道内木星质子辐射带的物理模型

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摘要

A physical model of the Jovian trapped protons with kinetic energies higher than 1 MeV inward of the orbit of the icy moon Europa is presented. The model, named Salammb?, takes into account the radial diffusion process, the absorption effect of the Jovian moons, and the Coulomb collisions and charge exchanges with the cold plasma and neutral populations of the inner Jovian magnetosphere. Preliminary modeling of the wave-particle interaction with electromagnetic ion cyclotron waves near the moon Io is also performed. Salammb? is validated against in situ proton measurements of Pioneer 10, Pioneer 11, Voyager 1,Galileo Probe, and Galileo Orbiter. A prominent feature of the MeV proton intensity distribution in the modeled area is the 2 orders of magnitude flux depletion observed in MeV measurements near the orbit of Io. Our simulations reveal that this is not due to direct interactions with the moon or its neutral environment but results from scattering of the protons by electromagnetic ion cyclotron waves.
机译:提出了Jovian被困质子的物理模型,其具有高于1 MeV的动力欧洲欧洲欧洲轨道轨道的动力学。该模型,命名为SalambB?,考虑到径向扩散过程,Jovian Moons的吸收效果以及与内部Jovian磁层的冷等离子体和中性群的库仑碰撞和电荷交换。还执行了与月球IO附近的电磁离子回旋波的波粒子相互作用的初步建模。 Salamb?用于验证先锋10,先锋11,Voyager 1,Galileo探针和伽利略轨道器的原位质子测量。模型区域中MEV质子强度分布的突出特征是在IO的轨道附近观察到MEV测量中观察到的2个幅度磁通耗尽的2个峰值耗尽。我们的模拟表明,这不是由于与月球或其中立环境的直接相互作用,而是通过电磁离子回旋波散射质子。

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