Equilibrium Phase Behavior of a Continuous-Space Microphase Former.
Publication
, Journal Article
Zhuang, Y; Zhang, K; Charbonneau, P
Published in: Physical review letters
March 2016
Periodic microphases universally emerge in systems for which short-range interparticle attraction is frustrated by long-range repulsion. The morphological richness of these phases makes them desirable material targets, but our relatively coarse understanding of even simple models hinders controlling their assembly. We report here the solution of the equilibrium phase behavior of a microscopic microphase former through specialized Monte Carlo simulations. The results for cluster crystal, cylindrical, double gyroid, and lamellar ordering qualitatively agree with a Landau-type free energy description and reveal the nontrivial interplay between cluster, gel, and microphase formation.
Duke Scholars
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Published In
Physical review letters
DOI
EISSN
1079-7114
ISSN
0031-9007
Publication Date
March 2016
Volume
116
Issue
9
Start / End Page
098301
Related Subject Headings
- General Physics
- 51 Physical sciences
- 49 Mathematical sciences
- 40 Engineering
- 09 Engineering
- 02 Physical Sciences
- 01 Mathematical Sciences
Citation
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Zhuang, Y., Zhang, K., & Charbonneau, P. (2016). Equilibrium Phase Behavior of a Continuous-Space Microphase Former. Physical Review Letters, 116(9), 098301. https://doi.org/10.1103/physrevlett.116.098301
Zhuang, Yuan, Kai Zhang, and Patrick Charbonneau. “Equilibrium Phase Behavior of a Continuous-Space Microphase Former.” Physical Review Letters 116, no. 9 (March 2016): 098301. https://doi.org/10.1103/physrevlett.116.098301.
Zhuang Y, Zhang K, Charbonneau P. Equilibrium Phase Behavior of a Continuous-Space Microphase Former. Physical review letters. 2016 Mar;116(9):098301.
Zhuang, Yuan, et al. “Equilibrium Phase Behavior of a Continuous-Space Microphase Former.” Physical Review Letters, vol. 116, no. 9, Mar. 2016, p. 098301. Epmc, doi:10.1103/physrevlett.116.098301.
Zhuang Y, Zhang K, Charbonneau P. Equilibrium Phase Behavior of a Continuous-Space Microphase Former. Physical review letters. 2016 Mar;116(9):098301.
Published In
Physical review letters
DOI
EISSN
1079-7114
ISSN
0031-9007
Publication Date
March 2016
Volume
116
Issue
9
Start / End Page
098301
Related Subject Headings
- General Physics
- 51 Physical sciences
- 49 Mathematical sciences
- 40 Engineering
- 09 Engineering
- 02 Physical Sciences
- 01 Mathematical Sciences