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Development and Characterization of an Ion Source to Simulate Solar Wind Plasma in a Vacuum Chamber

机译:模拟真空室中太阳风等离子体的离子源的开发与表征

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As NASA and the United States look to return to the Moon with the upcoming Artemis Mission, many questions must first be answered. One of the more pressing issues with our return to the Moon is the environment that we will be looking to have extended missions on and one day mine. The Moon's environment includes dusty plasma, i.e., plasma with fine regolith grains in it, and thus presents a danger to equipment and astronauts alike. In an attempt to learn more about the lunar environment, the Gas and Plasma Dynamics Laboratory (GPDL) at Missouri University of Science and Technology has begun preparing its facilities for experimentation. In this vain, an RF generated ion source has been fully integrated into the facility's large scale vacuum chamber. Preliminary tests have been done with this RF source to show its functionality. In addition, an experimental analysis of the vacuum chamber's four diffusion pumps has been done to determine the settling chamber pressure at various gas flow rates for each usable pump configuration. The mean free path was then calculated for each of these pump configurations in order to ensure the validity of the chamber's experimental environment. At the conclusion of this work, the facility is ready for the installations of a full diagnostic probe array and will soon be ready for work with lunar regolith simulants.
机译:由于NASA和美国希望通过即将到来的Artemis任务重返月球,必须首先回答许多问题。我们重返月球时最紧迫的问题之一是我们将希望在一天的地雷上进行任务扩展的环境。月球的环境中包括尘土飞扬的等离子体,即其中含有细小的碎石颗粒的等离子体,因此对设备和宇航员均构成危险。为了更多地了解月球环境,密苏里科技大学气体与等离子体动力学实验室(GPDL)已开始准备其实验设施。徒劳的是,RF产生的离子源已完全集成到设施的大型真空室中。对该射频源进行了初步测试,以显示其功能。此外,已经对真空室的四个扩散泵进行了实验分析,以确定每种可用泵配置在各种气体流速下的沉降室压力。然后为每种泵配置计算平均自由程,以确保腔室实验环境的有效性。这项工作结束时,该设施已准备好安装完整的诊断探头阵列,并将很快准备与月球重石模拟物一起工作。

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