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Volcanoes and volcanic provinces: Martian western hemisphere

David Holcomb Scott

Open publisher page 38 citations

Abstract

The recognition of some Martian landforms as volcanoes is based on their morphology and geologic setting. Other structures, however, may exhibit classic identifying features to a varying or a less degree; these may be only considered provisionally as having a volcanic origin. Regional geologic mapping of the western hemisphere of Mars from Viking images has revealed many more probable volcanoes and volcanotectonic features than were recognized on Mariner 9 pictures. These abundant volcanoes have been assigned to several distinct provinces on the basis of their areal distribution. Although the Olympus‐Tharsis region remains as the principal center of volcanism on Mars, four other important provinces are now also recognized: the lowland plains, Tempe Terra plateau, southern highlands (in the Phaethontis and Thaumasia quadrangles), and a probable ignimbrite province, situated along the highland‐lowland boundary in Amazonis Planitia. Volcanoes in any one province vary in morphology, size, and age, but volcanoes in each province tend to have common characteristics that distinguish that particular group.

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What this paper is about

The recognition of some Martian landforms as volcanoes is based on their morphology and geologic setting. Other structures, however, may exhibit classic identifying features to a varying or a less degree; these may be only considered provisionally as having a volcanic origin. Regional geologic mapping of the western hemisphere of Mars from Viking images has revealed many more probable volcanoes and volcanotectonic features than were recognized on Mariner 9 pictures. These abundant volcanoes have been assigned to several distinct provinces on the basis of their areal distribution. Although the Olympus‐Tharsis region remains as the principal center of volcanism on Mars, four other important provinces are now also recognized: the lowland plains, Tempe Terra plateau, southern highlands (in the Phaethontis and Thaumasia quadrangles), and a probable ignimbrite province, situated along the highland‐lowland boundary in Amazonis Planitia. Volcanoes in any one province vary in morphology, size, and age, but volcanoes in each province tend to have common characteristics that distinguish that particular group.

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Available abstract

The recognition of some Martian landforms as volcanoes is based on their morphology and geologic setting. Other structures, however, may exhibit classic identifying features to a varying or a less degree; these may be only considered provisionally as having a volcanic origin. Regional geologic mapping of the western hemisphere of Mars from Viking images has revealed many more probable volcanoes and volcanotectonic features than were recognized on Mariner 9 pictures. These abundant volcanoes have been assigned to several distinct provinces on the basis of their areal distribution. Although the Olympus‐Tharsis region remains as the principal center of volcanism on Mars, four other important provinces are now also recognized: the lowland plains, Tempe Terra plateau, southern highlands (in the Phaethontis and Thaumasia quadrangles), and a probable ignimbrite province, situated along the highland‐lowland boundary in Amazonis Planitia. Volcanoes in any one province vary in morphology, size, and age, but volcanoes in each province tend to have common characteristics that distinguish that particular group.

Key concepts: Geology, Volcano, Martian, Volcanism, Landform, Volcanic plateau, Tharsis, Plateau (mathematics)

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