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Xiaofan Li 0003
Person information
- affiliation: Illinois Institute of Technology, Department of Applied Mathematics, Chicago, IL, USA
- affiliation (PhD): University of California, Los Angeles, CA, USA
Other persons with the same name
- Xiaofan Li — disambiguation page
- Xiaofan Li 0001 — Jinan University, School of Intelligent Systems Science and Engineering, Zhuhai, China (and 4 more)
- Xiaofan Li 0002 — Yancheng Institute of Technology, School of Electrical Engineering, Yancheng, China (and 1 more)
- Xiaofan Li 0004 — Swinburne University of Technology, School of Software and Electrical Engineering, Melbourne, VIC, Australia
- Xiaofan Li 0005 (aka: XiaoFan Li 0005) — Chinese Academy of Sciences, Shenyang Institute of Automation, Shenyang, China
- Xiaofan Li 0006 — Virginia Tech, Bradley Department of Electrical and Computer Engineering, Blacksburg, VA, USA
- Xiaofan Li 0007 — University of Texas at Austin, McCombs School of Business, TX, USA
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2020 – today
- 2024
- [j12]Qingyi Zhan, Jinqiao Duan, Xiaofan Li, Yuhong Li:
Symplectic numerical integration for Hamiltonian stochastic differential equations with multiplicative Lévy noise in the sense of Marcus. Math. Comput. Simul. 215: 420-439 (2024) - 2022
- [i4]Qingyi Zhan, Jinqiao Duan, Xiaofan Li, Yuhong Li:
Numerical integration of stochastic contact Hamiltonian systems via stochastic Herglotz variational principle. CoRR abs/2207.11215 (2022) - 2020
- [i3]Qingyi Zhan, Jinqiao Duan, Xiaofan Li:
Symplectic Euler scheme for Hamiltonian stochastic differential equations driven by Levy noise. CoRR abs/2006.15500 (2020) - [i2]Qingyi Zhan, Jinqiao Duan, Xiaofan Li, Yuhong Li:
Symplectic method for Hamiltonian stochastic differential equations with multiplicative Lévy noise in the sense of Marcus. CoRR abs/2010.07691 (2020)
2010 – 2019
- 2019
- [j11]Xiao Wang, Wenpeng Shang, Xiaofan Li, Jinqiao Duan, Yanghong Huang:
Fokker-Planck equation driven by asymmetric Lévy motion. Adv. Comput. Math. 45(2): 787-811 (2019) - [j10]Xiaoli Chen, Fengyan Wu, Jinqiao Duan, Jürgen Kurths, Xiaofan Li:
Most probable dynamics of a genetic regulatory network under stable Lévy noise. Appl. Math. Comput. 348: 425-436 (2019) - 2018
- [j9]Xiao Wang, Jinqiao Duan, Xiaofan Li, Renming Song:
Numerical algorithms for mean exit time and escape probability of stochastic systems with asymmetric Lévy motion. Appl. Math. Comput. 337: 618-634 (2018) - [j8]Meng Zhao, Xiaofan Li, Wenjun Ying, Andrew Belmonte, John S. Lowengrub, Shuwang Li:
Computation of a Shrinking Interface in a Hele-Shaw Cell. SIAM J. Sci. Comput. 40(4): B1206-B1228 (2018) - 2016
- [j7]Ting Gao, Jinqiao Duan, Xiaofan Li:
Fokker-Planck equations for stochastic dynamical systems with symmetric Lévy motions. Appl. Math. Comput. 278: 1-20 (2016) - [j6]Meng Zhao, Andrew Belmonte, Shuwang Li, Xiaofan Li, John S. Lowengrub:
Nonlinear simulations of elastic fingering in a Hele-Shaw cell. J. Comput. Appl. Math. 307: 394-407 (2016) - 2015
- [j5]Xiao Wang, Jinqiao Duan, Xiaofan Li, Yuanchao Luan:
Numerical methods for the mean exit time and escape probability of two-dimensional stochastic dynamical systems with non-Gaussian noises. Appl. Math. Comput. 258: 282-295 (2015) - 2014
- [j4]Ting Gao, Jinqiao Duan, Xiaofan Li, Renming Song:
Mean Exit Time and Escape Probability for Dynamical Systems Driven by Lévy Noises. SIAM J. Sci. Comput. 36(3) (2014) - 2013
- [i1]Xu Sun, Jinqiao Duan, Xiaofan Li, Xiangjun Wang:
State estimation under non-Gaussian Levy noise: A modified Kalman filtering method. CoRR abs/1303.2395 (2013) - 2011
- [j3]Huiqin Chen, Jinqiao Duan, Xiaofan Li, Chengjian Zhang:
A computational analysis for mean exit time under non-Gaussian Lévy noises. Appl. Math. Comput. 218(5): 1845-1856 (2011) - [j2]Shuwang Li, Xiaofan Li:
A Boundary Integral Method for Computing the Dynamics of an Epitaxial Island. SIAM J. Sci. Comput. 33(6): 3282-3302 (2011)
2000 – 2009
- 2009
- [j1]Xiaofan Li, Qing Nie:
A high-order boundary integral method for surface diffusions on elastically stressed axisymmetric rods. J. Comput. Phys. 228(12): 4625-4637 (2009)
Coauthor Index
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