Search Results - "Breuer, Doris"
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1
Differentiation of Vesta: Implications for a shallow magma ocean
Published in Earth and planetary science letters (01-06-2014)“…The Dawn mission confirms earlier predictions that the asteroid 4 Vesta is differentiated with an iron-rich core, a silicate mantle and a basaltic crust, and…”
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Journal Article -
2
Plate tectonics on rocky exoplanets: Influence of initial conditions and mantle rheology
Published in Planetary and space science (01-08-2014)“…Several numerical studies have been published in the past years speculating about the existence of plate tectonics on large exoplanets. They focus on aspects…”
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3
Variations of Heat Flux and Elastic Thickness of Mercury From 3‐D Thermal Evolution Modeling
Published in Geophysical research letters (16-11-2024)“…Mercury's low obliquity and 3:2 spin‐orbit resonance create a surface temperature distribution with large latitudinal and longitudinal variations. These…”
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4
The tectonic mode of rocky planets: Part 1 – Driving factors, models & parameters
Published in Icarus (New York, N.Y. 1962) (15-05-2014)“…•How plate tectonics depends on interior temperature ≈ how it reacts to planet mass.•Plate tectonics is less likely for a hotter interior & on Earth-like…”
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5
The Temperature and Composition of the Mantle Sources of Martian Basalts
Published in Geophysical research letters (16-06-2023)“…The composition of basaltic melts in equilibrium with the mantle can be determined for several Martian meteorites and in‐situ rover analyses. We use the…”
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6
Thermal and transport properties of mantle rock at high pressure: Applications to super-Earths
Published in Icarus (New York, N.Y. 1962) (01-12-2011)“…► Rheological properties of super-Earths are calculated based on mineral physics. ► The viscosity of mantle rock strongly increases with pressure. ► Conductive…”
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Pre-mission InSights on the Interior of Mars
Published in Space science reviews (01-02-2019)“…The Interior exploration using Seismic Investigations, Geodesy, and Heat Transport (InSight) Mission will focus on Mars’ interior structure and evolution. The…”
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Modeling the evolution of the parent body of acapulcoites and lodranites: A case study for partially differentiated asteroids
Published in Icarus (New York, N.Y. 1962) (01-09-2018)“…•We model the thermo-chemical evolution of the acapulcoite-lodranite parent body.•We fit the thermo-chronological data and the differentiation degree of…”
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9
Iron snow, crystal floats, and inner-core growth: modes of core solidification and implications for dynamos in terrestrial planets and moons
Published in Progress in earth and planetary science (16-11-2015)“…Recent planetary space missions, new experimental data, and advanced numerical techniques have helped to improve our understanding of the deep interiors of the…”
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Journal Article Book Review -
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Outgassing History and Escape of the Martian Atmosphere and Water Inventory
Published in Space science reviews (01-01-2013)“…The evolution and escape of the martian atmosphere and the planet’s water inventory can be separated into an early and late evolutionary epoch. The first epoch…”
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11
Onset of solid‐state mantle convection and mixing during magma ocean solidification
Published in Journal of geophysical research. Planets (01-03-2017)“…The energy sources involved in the early stages of the formation of terrestrial bodies can induce partial or even complete melting of the mantle, leading to…”
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12
Thermal Evolution and Magnetic Field Generation in Terrestrial Planets and Satellites
Published in Space science reviews (01-05-2010)“…Of the terrestrial planets, Earth and Mercury have self-sustained fields while Mars and Venus do not. Magnetic field data recorded at Ganymede have been…”
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Journal Article Conference Proceeding -
13
Influence of a variable thermal conductivity on the thermochemical evolution of Mars
Published in Journal of Geophysical Research - Planets (01-02-2006)“…The influences of variations in thermal conductivity due to composition, temperature, and pressure in mantle and crust on the thermochemical evolution of Mars…”
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14
A review of volatiles in the Martian interior
Published in Meteoritics & planetary science (01-11-2016)“…Multiple observations from missions to Mars have revealed compelling evidence for a volatile‐rich Martian crust. A leading theory contends that eruption of…”
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Journal Article -
15
An alternative mechanism for recent volcanism on Mars
Published in Geophysical research letters (01-07-2007)“…Images of the Martian surface indicate that volcanism is a recent process on Mars with ages of the youngest lava flows of about 2 Ma. Interestingly, these…”
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16
Overturn of Ilmenite‐Bearing Cumulates in a Rheologically Weak Lunar Mantle
Published in Journal of geophysical research. Planets (01-02-2019)“…The crystallization of the lunar magma ocean (LMO) determines the initial structure of the solid Moon. Near the end of the LMO crystallization,…”
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17
The thermo-chemical evolution of Asteroid 21 Lutetia
Published in Icarus (New York, N.Y. 1962) (01-05-2013)“…► We model the thermo-chemical evolution of a 21 Lutetia-like body. ► Our model accounts for different values of the intrinsic density/macroporosity of…”
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Journal Article -
18
Hemispheric Dichotomy in Lithosphere Thickness on Mars Caused by Differences in Crustal Structure and Composition
Published in Journal of geophysical research. Planets (01-04-2018)“…Estimates of the Martian elastic lithosphere thickness suggest small values of ∼25 km during the Noachian for the southern hemisphere and a large present‐day…”
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Journal Article -
19
Viscosity of the Martian mantle and its initial temperature: Constraints from crust formation history and the evolution of the magnetic field
Published in Planetary and space science (01-02-2006)“…The rheology of the Martian mantle and the planet's initial temperature is constrained with thermal evolution models that include crust growth and test the…”
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An autonomous lunar geophysical experiment package (ALGEP) for future space missions
Published in Experimental astronomy (01-01-2022)“…Geophysical observations will provide key information about the inner structure of the planets and satellites and understanding the internal structure is a…”
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