Jingrun Chen, Professor, Doctoral Supervisor
Profile
Prof. Chen got Ph.D degree from Chinese Academy of Sciences in 2010. He came to work in the School of Mathematical Sciences and the Suzhou Advanced Research Institute at the University of Science and Technology of China in 2021, specializing in scientific computing and artificial intelligence. He has published over 50 academic papers in applied and computational mathematics journals including Mathematics of Computation,Journal of Computational Physics, Cross-field academic journals including Nature Communications,Materials Horizons etc..
Homepage
scai.sz.ustc.edu.cn
Email
jingrunchen@ustc.edu.cn
Research Interest
1. Scientific Computing
2. Deep learning and High-dimensional Partial Differential Equations
3. Machine Vision and Applications
4. Industrial Simulation Software
Award and Honor
Overseas High-level Youth Talent Plan, 2016
Article
1.J. Chen, C. Wang, and C. Xie, Convergence analysis of a second-order semi-implicit projection method for Landau-Lifshitz equation, Applied Numerical Mathematics, 168(2021), 55-74.
2. J. Chen, R. Du, and K. Wu, A comparison study of deep Galerkin method and deep Ritz method for elliptic problems with different boundary conditions, Communications in Mathematical Research, 36(2020), 354-376.
3. C. Xie, C. J. Garcia-Cervera, C. Wang, Z. Zhou, and J. Chen, Second-order semi-implicit projection methods for micromagnetics simulations, Journal of Computational Physics, 404(2020), 109104.
4. P. Li, C. Xie, R. Du, J. Chen, and X.-P. Wang, Two improved Gauss-Seidel projection methods for Landau-Lifshitz-Gilbert equation, Journal of Computational Physics, 401(2020), 109046.
5. J. Chen, D. Ma, and Z. Zhang, A multiscale finite element method for the Schrodinger equation with multiscale potentials, SIAM Journal on Scientific Computing, 41(2019), B1115-B1136.
6. J. Chen and W. Gao, Unconventional behavior of Friction at the Nanoscale beyond Amontons' law, ChemPhysChem, 18(2017), 2033-2039.
7. J. Chen and C. J. Garcia-Cervera, An efficient multigrid strategy for large-scale molecular mechanics optimization, Journal of Computational Physics, 342(2017), 29-42.
8. J. Chen and J. Lu, Analysis of the divide-and-conquer method for electronic structure calculations, Mathematics of Computation, 85(2016), 2919-2938.
9. J. Chen, C. J. Garcia-Cervera, and X. Li, An atomistic/continuum coupling method using enriched bases, Multiscale Modeling & Simulation, 13(2015), 766-789.
10. J. Lin, O. V. Mikhnenko, J. Chen, Z. Masri, A. Ruseckas, A. Mikhailovsky, R. Raab, J. Liu, P. W. M. Blom, M. A. Loi, C. J. Garcia-Cervera, I. D. W. Samuel, and T.-Q. Nguyen, Systematic study of exciton diffusion length in organic semiconductors by six experimental methods, Materials Horizons, 1(2014), 280-285.