Shishir Kumar Pandey
Peking University International Center for Quantum Materials, National Taiwan University, S N Bose National Centre for Basic Sciences, Indian Institute of Technology (Indian School of Mines), Dhanbad
About
I currently hold a joint position of research scientist at Artificial Intelligence for Science Institute, Beijing, China and post-doctoral research fellow at International Center for Quantum Materials, School of Physics, Peking University, China. Before joining the ICQM center, I joined the Department of Physics, National Taiwan University, Taipei for a brief period of time as a Research Associate. I completed my Ph.D. from S. N. Bose National Center For Basic Sciences, Kolkata after obtaining my master's degree from IIT (ISM), Dhanbad, India. My research focus is on development and application of computational methods in condensed matter physics to study structural, electronic and magnetic properties of materials. Using a combination of first-principle electronic structure methods and some theoretical approaches, my studies aim to provide answers to questions which are the forefront of research in material science.
Employment
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Peking University International Center for Quantum Materials Post-doctoral fellow2019 - 2022
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National Taiwan University Research Associate2018 - 2018
Education
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S N Bose National Centre for Basic Sciences Ph.D.2011 - 2018
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Indian Institute of Technology (Indian School of Mines), Dhanbad M.Sc.2009 - 2011
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University of Allahabad B.Sc.2004 - 2009
Projects & Funding
Projects & funding information is unavailable.
Publications (22)
- Emergence of a hidden-order phase well below the charge density wave transition in a topological Weyl semimetal (TaSe4)2I Save
- The Interplay of Magnetic Order with the Electronic Scattering and Crystal‐Field Effects in a Metallic Ferromagnet Save
- Emergent Ferromagnetism and Spin Gapless Conductivity in Atomically Thin Co3Sn2S2 Nanosheets Save
- Anomalous magnetism in the 3d−4f double perovskite oxide Nd2FeCrO6 with the Kramers ion Nd3+ Save
- Observation of Kondo-like electrical transport in ferromagnetic Fe2Ti1−xMnxSn Heusler alloy Save
- Pitfalls of exchange–correlation functionals in description of magnetism: Cautionary tale of the FeRh alloy Save
- Deep learning tight-binding approach for large-scale electronic simulations at finite temperatures with ab initio accuracy Save
- Terahertz crystal electric field transitions in a Kondo-lattice antiferromagnet Save
- Emergence of bond-dependent highly anisotropic magnetic interactions in Sr4RhO6 : A theoretical study Save
- A computational method to estimate spin–orbital interaction strength in solid state systems Save