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首页> 外文期刊>Bulletin of the American Physical Society >APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - First Observation of a Hall Effect in a Dusty Plasma: A Charged Granular Flow with Relevance to Planetary Rings
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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - First Observation of a Hall Effect in a Dusty Plasma: A Charged Granular Flow with Relevance to Planetary Rings

机译:APS-流体动力学APS部门第70届年会-事件-尘土等离子体中霍尔效应的首次观察:与行星环相关的带电颗粒流

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摘要

The particles in Saturn's rings exhibit complex dynamic behavior. They experience solar radiation pressure, electromagnetic forces, and granular collisions. To investigate the possibility of the Hall Effect in the dusty plasma that comprise Saturn's rings, we have built an experiment that demonstrates the Hall Effect in granular matter. We focus on the Hall Effect because the rings' grains become collisionally charged and experience Saturn's dipolar magnetic field and Lorentz forces as they orbit. The experimental setup includes a closed ring-like track where granular matter is forced to circulate driven by compressed air. The structure sits between two electromagnets so that a portion of the track experiences up to a 0.2 T magnetic field. We vary the strength of the field and the speed of the particles. We report the voltage differences between two conducting plates on opposite sides of the track. If Saturn's rings do experience the Hall Effect, the inside and outside of the rings will develop a charge separation that can lead to a radial electric field and various phenomena including orbital effects due to the additional electric forces. Observational evidence from Cassini suggests that Saturn's rings exhibit lighting, supporting the notion that they are electrically charged.
机译:土星环中的粒子表现出复杂的动力学行为。他们会经历太阳辐射压力,电磁力和颗粒碰撞。为了研究由土星环构成的尘土等离子体中发生霍耳效应的可能性,我们建立了一个实验来证明颗粒物质中的霍耳效应。我们将重点放在霍尔效应上,因为这些环的颗粒会碰撞带电,并且在它们运行时会经历土星的偶极磁场和洛伦兹力。实验装置包括一个封闭的环形轨道,在该轨道上,颗粒物被压缩空气驱动而被迫循环。该结构位于两个电磁体之间,因此轨道的一部分会经受高达0.2 T的磁场。我们改变场的强度和粒子的速度。我们报告了轨道相对两侧的两个导电板之间的电压差。如果土星环确实经历了霍尔效应,则环的内部和外部会形成电荷分离,这会导致径向电场和各种现象,包括由于额外的电力引起的轨道效应。卡西尼号(Cassini)的观测证据表明,土星环具有照明,支持它们带电的观点。

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