Area of research
Materials Chemistry · Computational Theory and Mathematics
Research interest
Research interests include Solidification and crystal growth phenomena, Advanced Mathematical Modeling in Engineering, Nonlinear Partial Differential Equations, and Differential Equations and Numerical Methods.
Cahn–Hilliard–Brinkman model for tumor growth with possibly singular potentials
Nutrient control for a viscous Cahn–Hilliard–Keller–Segel model with logistic source describing tumor growth
On a Cahn–Hilliard system with source term and thermal memory
Well-posedness and optimal control for a Cahn–Hilliard–Oono system with control in the mass term
Optimal Control Problems with Sparsity for Tumor Growth Models Involving Variational Inequalities
Second-order analysis of an optimal control problem in a phase field tumor growth model with singular potentials and chemotaxis
Optimal Distributed Control of a Cahn–Hilliard–Darcy System with Mass Sources
Optimal Control of Semiconductor Melts by Traveling Magnetic Fields
Longtime behavior for a generalized Cahn--Hilliard system with fractional operators
On a Cahn–Hilliard system with convection and dynamic boundary conditions
Optimal Distributed Control of Two-Dimensional Nonlocal Cahn–Hilliard–Navier–Stokes Systems with Degenerate Mobility and Singular Potential
Optimal distributed control of a diffuse interface model of tumor growth
Global Existence for a Nonstandard Viscous Cahn--Hilliard System with Dynamic Boundary Condition
Unsaturated deformable porous media flow with thermal phase transition
A Boundary Control Problem for the Viscous Cahn–Hilliard Equation with Dynamic Boundary Conditions