个人简介
教育经历
2011年5月-2011年11月,访问 The Australian National University, 联合培养导师:Neil S. Trudinger 教授
2008年2月-2013年7月,南京理工大学,理学院,博士/研究生,导师:杨孝平 教授
2004年9月-2007年6月,南京信息工程大学,数理学院,硕士/研究生,导师:李刚 教授
2000年9月-2004年6月,南京信息工程大学,数学系,学士/本科
工作经历
2018年7月-至今,南京信息工程大学,数学与统计学院,信息与计算科学系,教授
2018年3月-2018年9月,The Australian National University,Research Fellow
2017年7月-2017年8月,The Australian National University,Postdoc Fellow,合作导师:Neil S. Trudinger 教授
2016年11月-2018年6月,南京信息工程大学,数学与统计学院,信息与计算科学系,讲师
2015年5月-2015年8月,The Australian National University,Postdoc Fellow,合作导师:Neil S. Trudinger 教授
2014年6月-2014年9月,The Australian National University,Postdoc Fellow,合作导师:Neil S. Trudinger 教授
2014年12月-2016年10月,清华大学丘成桐数学科学中心,博士后,合作导师:简怀玉 教授,邓邦明 教授
2012年9月-2014年10月,无锡城市职业技术学院,基础课部,讲师
2007年7月-2010年6月,南京信息工程大学,滨江学院,教务科设备办
近期论文
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1. Jiang, Feida; Liu, Fang*; Yang, Xiao-Ping Lipschitz estimates for solutions to a porous medium problem involving the infinity Laplacian. Chinese J. Contemp. Math. 12pp, 2020, accepted.
2. Jiang, Feida*; Cui, Saihua; Li, Gang Nonexistence of entire positive solution for a conformal k-Hessian inequality. Czechoslovak Math. J., 13pp, 2020, in press.
3. Li, Gang; Gu Fen; Jiang, Feida* Positive viscosity solutions of a third degree homogeneous parabolic infinity Laplace equation. Comm. Pure Appl. Anal., 19 (2020), no. 3, 1449-1462.
4. Li, Gang; Cui, Saihua; Jiang, Feida* Inclusion relations of Garding’s cones and k-convex cones. Bull. Malays. Math. Sci. Soc., 43 (2020), no. 1, 125-139.
5. Jiang, Feida; Trudinger, Neil S.* Oblique boundary value problems for augmented Hessian equations III, Commun. Partial Differ. Equ., 44 (2019), no. 8, 708-748.
6. Shi, Juhua; Jiang, Feida* Pogorelov estimates for the Monge-Ampere equations. Proc. Amer. Math. Soc., 147 (2019), no. 6, 2561-2571.
7. Liu, Fang; Jiang, Feida* Parabolic biased infinity Laplacian equation related to the biased tug-of-war. Adv. Nonlinear Stud., 19 (2019), no. 1, 89-112.
8. Li, Gang; Luan, Yue; Yu, Jiangyong; Jiang, Feida* Well-posedness and exponential stability of a flexible structure with second sound and time delay. Appl. Anal., 98 (2019), no. 16, 2903-2915.
9. Jiang, Feida; Liu, Fang*; Yang, Xiao-Ping. Some estimates and properties of solutions to the biased infinity Laplacian equations. Scientia Sinica Mathematica (Chinese), 49 (2019), 859-878.
10. Jiang, Feida; Trudinger, Neil S.* Oblique boundary value problems for augmented Hessian equations I. Bull. Math. Sci., 8 (2018), no. 2, 353-411.
11. Jiang, Feida; Trudinger, Neil S.* On the second boundary value problem for Monge–Ampère type equations and geometric optics. Arch. Ration. Mech. Anal., 229 (2018), no. 2, 547-567.
12. Jiang, Feida*; Luan, Yue; Li, Gang Asymptotic stability and blow-up of solutions for an edge-degenerate wave equation with singular potentials and several nonlinear source terms of different sign. Electron. J. Differential Equations, 2018 (2018), 18, pp1-27.
13. Jiang, Feida; Xiang, Ni*; Xu, Jinju Gradient estimates for Neumann boundary value problem of Monge-Ampère type equations. Commun. Contemp. Math., 19 (2017), no. 4, 1650041, 16pp.
14. Jiang, Feida; Trudinger, Neil S.* Oblique boundary value problems for augmented Hessian equations II. Nonlinear Anal., 154 (2017), 148–173.
15. Jiang, Feida; Trudinger, Neil S.*; Xiang, Ni On the Neumann problem for Monge-Ampère type equations. Canad. J. Math., 68 (2016), no. 6, 1334–1361.
16. Huang, Yong; Jiang, Feida; Liu, Jiakun* Boundary C2,α estimates for Monge-Ampère type equations. Adv. Math., 281 (2015), 706–733.
17. Chen, Ping*; Jiang, Feida; Yang, Xiao-Ping Optimal transportation in Rn for a distance cost with a convex constraint. Z. Angew. Math. Phys., 66 (2015), no. 3, 587–606.
18. Jiang, Feida*; Trudinger, Neil S.; Yang, Xiao-Ping On the Dirichlet problem for a class of augmented Hessian equations. J. Differential Equations, 258 (2015), no. 5, 1548–1576.
19. Jiang, Feida; Trudinger, Neil S.* On Pogorelov estimates in optimal transportation and geometric optics. Bull. Math. Sci., 4 (2014), no. 3, 407–431.
20. Jiang, Feida*; Li, Gang; Zhu, Jiang On the semilinear reaction diffusion system arising from nuclear reactors. Appl. Anal., 93 (2014), no. 12, 2608–2624.