human | Q5 |
P244 | Library of Congress authority ID | no2010083039 |
P8189 | National Library of Israel J9U ID | 987007365027305171 |
P856 | official website | http://iris.ucl.ac.uk/iris/browse/profile?upi=LSTIX78 |
P496 | ORCID iD | 0000-0003-3778-2432 |
P1153 | Scopus author ID | 7003403662 |
P69 | educated at | University of California, Berkeley | Q168756 |
University of Delaware | Q1068072 | ||
P108 | employer | University College London | Q193196 |
University of California, Los Angeles | Q174710 | ||
P735 | given name | Lars | Q15635262 |
Lars | Q15635262 | ||
P106 | occupation | researcher | Q1650915 |
P21 | sex or gender | male | Q6581097 |
Q80937161 | A novel topological compression mechanism in a covalent liquid |
Q89882067 | A silicate dynamo in the early Earth |
Q60722326 | Advances in high-pressure mineral physics: From the deep mantle to the core |
Q78220429 | Atomic structure of SiO2 glass and its response to pressure |
Q44815661 | Bone chemical structure response to mechanical stress studied by high pressure Raman spectroscopy. |
Q57857253 | Correlation of seismic and petrologic thermometers suggests deep thermal anomalies beneath hotspots |
Q55384094 | Critical vaporization of MgSiO3. |
Q57187567 | EChO |
Q74481940 | Elasticity of iron at the temperature of the Earth's inner core |
Q41562115 | Electrical conductivity of SiO2 at extreme conditions and planetary dynamos. |
Q59798555 | Energetics, equation of state, and elasticity of NAL phase: Potential host for alkali and aluminum in the lower mantle |
Q59798575 | Estimates of the transition zone temperature in a mechanically mixed upper mantle |
Q64231276 | Extrinsic Elastic Anisotropy in a Compositionally Heterogeneous Earth's Mantle |
Q57949244 | First-principles calculations of the lattice thermal conductivity of the lower mantle |
Q85079908 | First-principles study of enhancement of transport properties of silica melt by water |
Q78516098 | First-principles study of illite-smectite and implications for clay mineral systems |
Q59798560 | Geophysics of Chemical Heterogeneity in the Mantle |
Q97587358 | Heat and charge transport in H2O at ice-giant conditions from ab initio molecular dynamics simulations |
Q34674870 | High-Pressure Elasticity of Iron and Anisotropy of Earth's Inner Core. |
Q59066581 | Hydrous silicate melt at high pressure |
Q57890160 | Inferring the thermochemical structure of the upper mantle from seismic data |
Q78121490 | Iron at high pressure: Linearized-augmented-plane-wave computations in the generalized-gradient approximation |
Q58159879 | Joint mineral physics and seismic wave traveltime analysis of upper mantle temperature |
Q47659775 | Melting in super-earths. |
Q64119439 | Melting of CaSiO Perovskite at High Pressure |
Q29014539 | Mineralogy and elasticity of the oceanic upper mantle: Origin of the low-velocity zone |
Q59798553 | Petrological interpretation of deep crustal intrusive bodies beneath oceanic hotspot provinces |
Q59798589 | Phase stability and shear softening in CaSiO3 perovskite at high pressure |
Q59794814 | Primordial metallic melt in the deep mantle |
Q87049695 | Spin crossover in ferropericlase from first-principles molecular dynamics |
Q83605864 | Structure of iron to 1 Gbar and 40, 000 K |
Q27014187 | The EChO science case |
Q59798582 | The effect of bulk composition and temperature on mantle seismic structure |
Q57187653 | The science of EChO |
Q85079816 | Thermal conductivity of periclase (MgO) from first principles |
Q78145153 | Thermal properties of iron at high pressures and temperatures |
Q59798597 | Thermodynamics of mantle minerals - I. Physical properties |
Q59798566 | Thermodynamics of mantle minerals - II. Phase equilibria |
Q59798572 | Thermodynamics of the Earth's Mantle |
Q52415929 | Thermoelasticity of Silicate Perovskite and Magnesiowustite and Stratification of the Earth's Mantle. |
Q84172291 | Viscosity of MgSiO3 liquid at Earth's mantle conditions: implications for an early magma ocean |
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