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Properties of the lunar wake predicted by analytic models and hybrid-kinetic simulations

机译:分析预测的月球后的属性模型和hybrid-kinetic模拟

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An approximate model derived by Hutchinson (2008a), describing the interaction between the solar wind and the Moon, is applied to describe plasma in the lunar wake. The model accounts for plasma entering the wake region from two tangent points around the Moon. Cylindrical geometry is assumed, along with a strong constant magnetic field, and fixed transverse velocity and temperature. Under these approximations two angle-dependent equations for fluid flow are obtained, which can be solved using the method of characteristics to provide the density inside the wake region. It is demonstrated that the model valid under these assumptions provides excellent agreement with observations from the ARTEMIS mission and with large-scale hybrid-kinetic plasma simulations. The model provides a practical alternative to kinetic simulations and is generally useful for determining properties of the lunar wake under different solar wind conditions. It will be useful as well for predicting properties of the plasma environment around unmagnetized bodies that have not yet been visited by spacecraft.
机译:哈钦森的近似模型派生(2008 a),描述之间的交互太阳风和月亮,应用于描述等离子体在月球。等离子体进入后从两个切线点在月球。假设,以及强大的恒定磁场领域,横向速度和固定温度。angle-dependent方程流体流动获得的,可以使用的方法来解决提供内部的密度特征后地区。在这些假设提供了出色的有效阿耳特弥斯同意观察任务和大规模hybrid-kinetic等离子体模拟。动力学模拟和实际的替代品通常是用于确定的属性月球后根据不同的太阳风条件。预测性能的等离子体环境在垂直入射的身体尚未拜访了飞船。

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