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Multiscale methods and analysis for the Dirac equation in nonrelativistic regime
时间:2024年12月27日 15:00 点击数:

报告人:Weizhu Bao

报告地点:数学与统计学院415室

报告时间:2024年12月27日星期五16:30-17:30

邀请人:李勇、冀书关

报告摘要:

In this talk, I will review our recent works on multiscale methods and analysis for solving the highly oscillatory (nonlinear) Dirac equation including the nonrelativistic regime, involving a small dimensionless parameter which is inversely proportional to the speed of light. In this regime, the solution is highly oscillating in time and the energy becomes unbounded and indefinite, which brings significant difficulty in analysis and heavy burden in numerical computation. Rigorous error bounds are obtained for finite difference time domain (FDTD) methods, time splitting Fourier pseudospectral (TSFP) method and exponential wave integrator Fourier pseudospectral (EWI-FP), which depend explicitly on the mesh size, time step and the small parameter. Then based on a multiscale expansion of the solution, we present a multiscale time integrator Fourier pseudospectral (MTI-FP) method for the Dirac equation and prove its error bound which uniformly accurate in term of the small dimensionless parameter. Finally, by introducing the regularity compensation oscillatory (RCO) technique, we establish improved uniform error bounds on time-splitting methods for the long-time dynamics of the Dirac equation with small electromagnetic potentials and the nonlinear Dirac equation with weak nonlinearity. Numerical results demonstrate that our error estimates are sharp and optimal. This is a joint work with Yongyong Cai, Yue Feng, Xiaowei Jia, Qinglin Tang and Jia Yin.

主讲人简介:

Professor Weizhu BAO is Provost's Chair Professor at Department of Mathematics, and Vice Dean for Graduate Studies and Academic Affairs of Faculty of Science, National University of Singapore. He got his PhD from Tsinghua University in 1995. He has made significant contributions in modeling and simulation of Bose-Einstein condensation, solid-state dewetting and geometric flows; and multiscale methods and analysis for highly oscillatory PDEs. He was awarded the Feng Kang Prize in Scientific Computing by the Chinese Computational Mathematics Society in 2013. He was an Invited Speaker at the International Congress of Mathematicians (ICM) in 2014. He was elected a Fellow of the American Mathematical Society (AMS Fellow), a Fellow of the Society of Industrial and Applied Mathematics (SIAM Fellow) and a Fellow of Singapore National Academy of Science (SNAS Fellow) in 2022.

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