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Dust motions in quasi-statically charged binary asteroid systems
Authors:Jared M Maruskin  Julie Bellerose  Macken Wong  Lara Mitchell  David Richardson  Douglas Mathews  Tri Nguyen  Usha Ganeshalingam  Gina Ma
Institution:1. Department of Mathematics, San José State University, San Jose, CA, USA
2. NASA Ames Research Center, Moffett Field, CA, USA
3. San José State University, San Jose, CA, USA
Abstract:In this paper, we discuss dust motion and investigate possible mass transfer of charged particles in a binary asteroid system, in which the asteroids are electrically charged due to solar radiation. The surface potential of the asteroids is assumed to be a piecewise function, with positive potential on the sunlit half and negative potential on the shadow half. We derive the nonautonomous equations of motion for charged particles and an analytic representation for their lofting conditions. Particle trajectories and temporary relative equilibria are examined in relation to their moving forbidden regions, a concept we define and discuss. Finally, we use a Monte Carlo simulation for a case study on mass transfer and loss rates between the asteroids.
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