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I'm currently interested in the modern theory of polarization, finite electric fields and magnetic phenomena, with applications to metal/perovskite interfaces and novel magnetoelectric devices. In addition to the application of existing methods and algorithms to new physical problems, an important part of my work is devoted to the exploration of new techniques and their implementation into the high-performance electronic structure package that I personally maintain (see below). In the past I also worked on the first-principles study of metal-supported nanostructures, with a particular focus on ultrathin insulating films, supramolecular self-assembled clusters and complex overlayer-induced substrate reconstructions.
I'm currently interested in the modern theory of polarization, finite electric fields and magnetic phenomena, with applications to metal/perovskite interfaces and novel magnetoelectric devices. In addition to the application of existing methods and algorithms to new physical problems, an important part of my work is devoted to the exploration of new techniques and their implementation into the high-performance electronic structure package that I personally maintain (see below). In the past I also worked on the first-principles study of metal-supported nanostructures, with a particular focus on ultrathin insulating films, supramolecular self-assembled clusters and complex overlayer-induced substrate reconstructions.
研究兴趣
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PHYSICAL REVIEW Xno. 1 (2024): 011041
Physical Review Lettersno. 8 (2023)
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PHYSICAL REVIEW LETTERSno. 16 (2023): 166301-166301
npj Computational Materialsno. 1 (2023): 1-7
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