activity
20122021
most citedA Large Data Regime for non-linear Wave Equations

5 citations · 13 across the 6 of their papers we have counts for

collaborators

9 papers

math.AP2021

A globally smooth solution to the relativistic string equation

Jinhua Wang, Changhua Wei

We prove the global existence of smooth solution to the relativistic string equation in a class of data that is not small. Our solution admits the feature that the right-travelling…

math.OC2021

Convergence analysis of inexact descent algorithm for multiobjective optimizations on Riemannian manifolds without curvature constraints

Xiangmei Wang, Jinhua Wang, Chong Li

We study the convergence issue for inexact descent algorithm (employing general step sizes) for multiobjective optimizations on general Riemannian manifolds (without curvature cons…

math.ST20191 cited

Sparse recovery via nonconvex regularized -estimators over -balls

Xin Li, Dongya Wu, Chong Li +2

In this paper, we analyse the recovery properties of nonconvex regularized -estimators, under the assumption that the true parameter is of soft sparsity. In the statistical aspe…

math.OC20191 cited

Convergence Analysis of Gradient Algorithms on Riemannian Manifolds Without Curvature Constraints and Application to Riemannian Mass

Chong Li, Xiangmei Wang, Jinhua Wang +1

We study the convergence issue for the gradient algorithm (employing general step sizes) for optimization problems on general Riemannian manifolds (without curvature constraints).…

math.AP2019

A large data theory for nonlinear wave on the Schwarzschild background

Saisai Huo, Jinhua Wang

We study both of the scattering and Cauchy problems for the semilinear wave equation with null quadratic form on the Schwarzschild background. Prescribing the scattering data that…

gr-qc2018

Future stability of the Milne model for Einstein-Klein-Gordon system

Jinhua Wang

We study the small perturbations of the -dimensional Milne model for the Einstein-Klein-Gordon (EKG) system. We prove the nonlinear future stability, and show that the perturb…