We consider analytical and numerical aspects of the phase diagram for microphase separation of diblock copolymers. Our approach is variational and is based upon a density functional theory which entails minimization of a nonlocal Cahn–Hilliard functional. Based upon two parameters which characterize the phase diagram, we give a preliminary analysis of the phase plane. That is, we divide the plane into regions wherein a combination of analysis and numerics is used to describe minimizers. In particular we identify a regime wherein the uniform (disordered state) is the unique global minimizer; a regime wherein the constant state is linearly unstable and where numerical simulations are currently the only tool for characterizing the phase geomet...
We present the first of two articles on the small volume fraction limit of a nonlocal Cahn–Hilliard ...
We present the first of two articles on the small volume fraction limit of a nonlocal Cahn–Hilliard ...
In this paper we present the results of a calculation of the phase diagram of a highly polydisperse ...
We consider analytical and numerical aspects of the phase diagram for microphase separation of diblo...
We consider analytical and numerical aspects of the phase diagram for microphase separation of diblo...
We consider analytical and numerical aspects of the phase diagram for microphase separation of diblo...
We consider analytical and numerical aspects of the phase diagram for microphase separation of diblo...
We consider analytical and numerical aspects of the phase diagram for microphase separation of diblo...
We consider here the problem of phase separation in copolymer melts. The Ohta-Kawasaki density funct...
We consider here the problem of phase separation in copolymer melts. The Ohta–Kawasaki density funct...
Diblock copolymer melts, dubbed “designer materials”, have the remarkable ability to self-Bemble int...
We present the second of two articles on the small volume-fraction limit of a nonlocal Cahn-Hilliard...
We present the second of two articles on the small volume-fraction limit of a nonlocal Cahn-Hilliard...
We present the second of two articles on the small volume fraction limit of a nonlocal Cahn-Hilliard...
In this thesis, we investigate a model for periodic phase separation. The model consists primarily o...
We present the first of two articles on the small volume fraction limit of a nonlocal Cahn–Hilliard ...
We present the first of two articles on the small volume fraction limit of a nonlocal Cahn–Hilliard ...
In this paper we present the results of a calculation of the phase diagram of a highly polydisperse ...
We consider analytical and numerical aspects of the phase diagram for microphase separation of diblo...
We consider analytical and numerical aspects of the phase diagram for microphase separation of diblo...
We consider analytical and numerical aspects of the phase diagram for microphase separation of diblo...
We consider analytical and numerical aspects of the phase diagram for microphase separation of diblo...
We consider analytical and numerical aspects of the phase diagram for microphase separation of diblo...
We consider here the problem of phase separation in copolymer melts. The Ohta-Kawasaki density funct...
We consider here the problem of phase separation in copolymer melts. The Ohta–Kawasaki density funct...
Diblock copolymer melts, dubbed “designer materials”, have the remarkable ability to self-Bemble int...
We present the second of two articles on the small volume-fraction limit of a nonlocal Cahn-Hilliard...
We present the second of two articles on the small volume-fraction limit of a nonlocal Cahn-Hilliard...
We present the second of two articles on the small volume fraction limit of a nonlocal Cahn-Hilliard...
In this thesis, we investigate a model for periodic phase separation. The model consists primarily o...
We present the first of two articles on the small volume fraction limit of a nonlocal Cahn–Hilliard ...
We present the first of two articles on the small volume fraction limit of a nonlocal Cahn–Hilliard ...
In this paper we present the results of a calculation of the phase diagram of a highly polydisperse ...