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Rearrangement of Granular Surfaces on Asteroids due to Thermal Cycling

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arxiv 2308.03749 v1 pith:H6HKHRFS submitted 2023-08-07 astro-ph.EP cond-mat.softphysics.geo-ph

classification astro-ph.EPcond-mat.softphysics.geo-ph
keywords thermalcyclinggrainssurfacesasteroidcausescentimetersconductivity
verification ladder T0 review T1 audit T2 compute T3 formal
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In granular systems, thermal cycling causes compaction, creep, penetration of dense objects, and ratcheting of grains against each other. On asteroid surfaces, thermal cycling is high amplitude and can happen billions of times in a few million years. We use a 1-dimensional thermophysical conductivity model to estimate the relative displacement of grains in proximity to one another, caused by variations in thermal conductivity or shadows. We find that grains would experience relative displacements of order a few microns during each thermal cycle. If thermal cycling causes diffusive transport, then the asteroid's few centimeters deep thermal skin depth could flow a few centimeters in a million years. Thermal cycling could cause long-distance flows on sloped surfaces, allowing fine materials to collect in depressions.

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