Electrostatic environment near lunar vertical hole: 3D plasma particle simulations
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文摘

Electrostatic environment near a lunar hole is first studied by plasma particle simulations.

Surface charging properties are changed by unique plasma dynamics inside the hole.

Solar wind electron inflow to the hole bottom is limited due to absorption by the vertical wall.

Complex photoelectron flow changes a current balance condition at the hole bottom.

Stronger electric field is produced at sunlit–shadow boundaries than typical craters.

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