Renata M. Wentzcovitch
- ORCiD
- https://orcid.org/0000-0001-5663-9426
- OpenAlex ID
- https://openalex.org/A5020910604 (API record)
Associated Concepts [?]
- Physics
- Chemistry
- Materials science
- Quantum mechanics
- Organic chemistry
- Thermodynamics
- Geology
- Biology
- Condensed matter physics
- Engineering
- Crystallography
- Paleontology
- Computer science
- Geochemistry
- Geophysics
- Composite material
- Mathematics
- Mantle (geology)
- Chemical engineering
- Metallurgy
Authored Works
sorted by decreasing year, and then by display-name
- The post-perovskite transition in Fe- and Al-bearing bridgmanite
- Electronic structure and stability field of iron-bearing pppv Mg2SiO4 at ultra-high pressure*
- Discovering the mineralogy of super-Earth-type planets
- Building a database of thermoelastic properties using ab initio workflows
- Atomistic simulation of δ-AlOOH at high pressures
- Anharmonic Thermodynamics and Lattice Thermal Conductivity across the Post-Perovskite Transition in MgSiO3
- Ab initio melting temperatures of bcc and hcp iron under the Earth's inner core condition
- pgm: A Python package for free energy calculation
- Using Neural Networks to Constrain Lateral Temperature and Compositional Variations in the Lower Mantle
- Two-step nucleation of the Earth's inner core
- Strain- and stress-induced changes on second-order elastic coefficient and its relationship with third-order elastic coefficient
- Spin state and phase stability of iron-bearing Mg2SiO4
- Spin crossover in ferropericlase in the Earths lower mantle from LDA + USC calculations
- Prediction of Fe-Mg and Fe-Mg-O Compounds at Exoplanetary Interior Pressures
- New insights on the structure and composition of the lower mantle from global adjoint tomography
- Iron-rich Fe-O compounds at Earth's core pressures
- Elasticity of Lizardite at High Pressure and Temperature: Implications for the Water Content in Subduction Zones
- Detecting the iron spin crossover in ferropericlase
- Ab initio lattice thermal conductivity of MgSiO3 across perovskite-postperovskite phase transition
- A systematic DFT study of thermal properties of nine earth materials using ab initio workflows
Linked Co-Authors
- Chenxing Luo
- G. A. Abers
- Grace E. Shephard
- Jiancheng Zhuang
- Jin Liu
- Juan Valencia-Cardona
- Jung‐Fu Lin
- Reidar G. Trønnes
- Vitali B. Prakapenka
- Xin Deng
- Zhongqing Wu
Linked Collaborating Institutions
- Columbia University, New York
- Cornell University, New York
- Guangdong University of Technology, China
- Indian Institute of Science Education and Research, Calcutta, India
- Lamont-Doherty Earth Observatory
- NASA Ames Research Center
- National Institute for Materials Science, Japan
- Princeton University, New Jersey
- State University of New York System
- University of Chicago
- University of Minnesota, Twin Cities
- University of Oslo, Center for Earth Evolution and Dynamics
- University of Oslo, Norway
- University of Science and Technology of China, Hefei
- University of Utrecht, Netherlands
- Xiamen University, China
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