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Qinglin Tang
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Publications
- 2025
[j25]Weizhu Bao, Qinglin Tang
, Yongjun Yuan:
A Normalized Gradient Flow Method for Computing Ground States of Spin-2 Bose-Einstein Condensates. SIAM J. Sci. Comput. 47(3): 710- (2025)- 2024
[i3]Weizhu Bao, Qinglin Tang, Yongjun Yuan:
Computing ground states of spin-2 Bose-Einstein condensates by the normalized gradient flow. CoRR abs/2407.14441 (2024)- 2020
[i1]Weizhu Bao, Rémi Carles, Chunmei Su, Qinglin Tang:
Error estimates of energy regularization for the logarithmic Schrodinger equation. CoRR abs/2006.05114 (2020)- 2019
[j15]Weizhu Bao, Rémi Carles
, Chunmei Su
, Qinglin Tang:
Regularized numerical methods for the logarithmic Schrödinger equation. Numerische Mathematik 143(2): 461-487 (2019)
[j14]Weizhu Bao, Rémi Carles
, Chunmei Su
, Qinglin Tang:
Error Estimates of a Regularized Finite Difference Method for the Logarithmic Schrödinger Equation. SIAM J. Numer. Anal. 57(2): 657-680 (2019)- 2017
[j10]Weizhu Bao
, Yongyong Cai
, Xiaowei Jia, Qinglin Tang:
Numerical Methods and Comparison for the Dirac Equation in the Nonrelativistic Limit Regime. J. Sci. Comput. 71(3): 1094-1134 (2017)- 2016
[j8]Weizhu Bao
, Yongyong Cai
, Xiaowei Jia, Qinglin Tang:
A Uniformly Accurate Multiscale Time Integrator Pseudospectral Method for the Dirac Equation in the Nonrelativistic Limit Regime. SIAM J. Numer. Anal. 54(3): 1785-1812 (2016)- 2015
[j7]Weizhu Bao
, Shidong Jiang
, Qinglin Tang, Yong Zhang
:
Computing the ground state and dynamics of the nonlinear Schrödinger equation with nonlocal interactions via the nonuniform FFT. J. Comput. Phys. 296: 72-89 (2015)- 2014
[j6]Wei Jiang
, Weizhu Bao
, Qinglin Tang, Hanquan Wang:
A variational-difference numerical method for designing progressive-addition lenses. Comput. Aided Des. 48: 17-27 (2014)
[j4]Weizhu Bao
, Qinglin Tang:
Numerical Study of Quantized Vortex Interactions in the Nonlinear Schrödinger Equation on Bounded Domains. Multiscale Model. Simul. 12(2): 411-439 (2014)- 2013
[j2]Weizhu Bao
, Qinglin Tang, Zhiguo Xu:
Numerical methods and comparison for computing dark and bright solitons in the nonlinear Schrödinger equation. J. Comput. Phys. 235: 423-445 (2013)
[j1]Weizhu Bao
, Daniel Marahrens, Qinglin Tang, Yanzhi Zhang:
A Simple and Efficient Numerical Method for Computing the Dynamics of Rotating Bose-Einstein Condensates via Rotating Lagrangian Coordinates. SIAM J. Sci. Comput. 35(6) (2013)

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