An Energy Stable Second-Order Accurate Scheme for Microphase Separation of Periodic Diblock Copolymers

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초록

A linear, unconditionally energy stable, and second-order accurate numerical scheme for the Ohta-Kawasaki equation modeling the diblock copolymer dynamics is proposed. The temporal discretisation is based on the Crank-Nicolson temporal discretisation and extrapolation. To suppress the dominance of nonlinear term, a proper stabilising parameter is used. All nonlinear parts are linearised by using the extrapolation from the information at preceding time levels. To solve the resulting linear system, an efficient linear multigrid algorithm is used. The unconditionally energy stability, mass conservation, and unique solvability of the scheme are analytically proved. In two-dimensional case, we run convergence and stability tests, and consider pattern formations for various average concentrations. Pattern formations in three-dimensional space are also studied.

키워드

Unconditional energy stabilitysecond-order accuracyOhta-Kawasaki modelfinite difference methodCAHN-HILLIARD EQUATIONMINIMIZING WAVELENGTHSEQUILIBRIUM STATESMULTIGRID METHODALLEN-CAHNEVOLUTIONEFFICIENTMODELSSYSTEM
제목
An Energy Stable Second-Order Accurate Scheme for Microphase Separation of Periodic Diblock Copolymers
저자
Yang, JunxiangKim, Junseok
DOI
10.4208/eajam.240620.071020
발행일
2021-05
유형
Article
저널명
East Asian Journal on Applied Mathematics
11
2
페이지
234 ~ 254