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Energy-minimizing wavelengths of equilibrium states for diblock copolymers in the hex-cylinder phase
- Jeong, Darae;
- Lee, Seunggyu;
- Choi, Yongho;
- Kim, Junseok
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15SCOPUS
17초록
We investigate the energy-minimizing wavelengths of equilibrium states for diblock copolymers in the hex-cylinder phase. The mathematical model is the Cahn-Hilliard equation with long-range interactions. The numerical scheme is based on a linearly gradient stable method and the resulting discrete system of equations is solved by a Fourier-spectral method. We solve the equations in non-square domains because the periodic unit is not a square. We choose the computational domains as rectangles of aspect ratio root 3 (height/width). We run the computation until the system reaches a numerical equilibrium state. We repeat these calculations in domains of gradually increasing size and then find the wavelength that minimizes the domain-size-scaled total energy. We investigate the effect of the parameters on the energy-minimizing wavelength. We also propose a formula for a non-square domain that is close to a square domain and has an exact periodicity. (C) 2015 Elsevier B.V. All rights reserved.
키워드
- 제목
- Energy-minimizing wavelengths of equilibrium states for diblock copolymers in the hex-cylinder phase
- 저자
- Jeong, Darae; Lee, Seunggyu; Choi, Yongho; Kim, Junseok
- 발행일
- 2015-07
- 유형
- Article
- 권
- 15
- 호
- 7
- 페이지
- 799 ~ 804