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Impact Crater Densities on Volcanoes and Coronae on Venus: Implications for Volcanic Resurfacing

Noriyuki Namiki, Sean C. Solomon

Open publisher page 106 citations

Abstract

The density of impact craters on large volcanoes on Venus is half the average crater density for the planet. The crater density on some classes of coronae is not significantly different from the global average density, but coronae with extensive associated volcanic deposits have lower crater densities. These results are inconsistent with both single-age and steady-state models for global resurfacing and suggest that volcanoes and coronae with associated volcanism have been active on Venus over the last 500 million years.

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What this paper is about

The density of impact craters on large volcanoes on Venus is half the average crater density for the planet. The crater density on some classes of coronae is not significantly different from the global average density, but coronae with extensive associated volcanic deposits have lower crater densities. These results are inconsistent with both single-age and steady-state models for global resurfacing and suggest that volcanoes and coronae with associated volcanism have been active on Venus over the last 500 million years.

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OpenAlex reports 106 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

The density of impact craters on large volcanoes on Venus is half the average crater density for the planet. The crater density on some classes of coronae is not significantly different from the global average density, but coronae with extensive associated volcanic deposits have lower crater densities. These results are inconsistent with both single-age and steady-state models for global resurfacing and suggest that volcanoes and coronae with associated volcanism have been active on Venus over the last 500 million years.

Key concepts: Impact crater, Venus, Volcano, Volcanism, Geology, Volcanology, Ejecta, Planet

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Impact Crater Densities on Volcanoes and Coronae on Venus: Implications for Volcanic Resurfacing — Research Paper | ScholarLens