About
Prof. Yanming Ma (http://mym.calypso.cn) received his Ph.D (2001) in physics in Jilin University, China, and then worked as a postdoctoral researcher at the Steacie Institute for Molecular Sciences, National Research Council of Canada (2002-2004) and Laboratory of Crystallography in ETH, Switzerland (2006-2008). He is currently a distinguished Au-Chin Tang Professor in College of Physics and vice president of Jilin University. His research interests mainly focus on development of simulation methods (e.g., CALYPSO at http://www.calypso.cn) on crystal structure prediction and large-scale electronic structure calculations of materials, and the use of these developed methods for design of materials (e.g., hydrogen-rich superconductors and superhard materials, etc) under high pressure conditions. He has published >360 Peer-reviewed papers with more than 20,000 citations and given more than 100 invited talks in conferences and universities, and is the recipient of a highly cited researcher (2017-2021) from Clarivate Analytics. He received the Jamieson Award for High Pressure Science and Technology (2001) and the very first Walter Kohn Prize for Quantum-mechanical Materials and Molecular Modeling (2016).
Employment
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Jilin University Distinguished Au-Chin Tang Professor
Education
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Jilin University PhD1998 - 2001
Projects & Funding
Projects & funding information is unavailable.
Publications (352)
- Observation of Molecular and Polymeric Nitrogen-Filled NaCl Layers Save
- Promising Room-Temperature Superconductor in the La–Sc–H System at High Pressure Save
- Synthesis of hafnium superhydrides at megabar pressures Save
- Ambient Stabilization of Metastable Face-Centered Cubic Lanthanide Trihydrides Save
- CrystalFlow: a flow-based generative model for crystalline materials Save
- Theory of polarization-switchable electrical conductivity anisotropy in piezoelectric and ferroelectric semiconductors Save
- Multidomed superconductivity and tunable orbital-selective pairing in pressurized FeSe with correlation enhanced electron-phonon coupling Save
- Hydrogen-Vacancy-Induced Stable Superconducting Niobium Hydride at High Pressure Save
- Fast and stable tight-binding framework for nonlocal kinetic energy density functional reconstruction in orbital-free density functional calculations Save
- Stability and Electronic Properties of SnS/ZnS Interfaces: A First-Principles Investigation Save