Minimum Principle for Indefinite Mean-Field Free Energies

The extension of Bogoliubov Jr.’s minimax principle to biaxial nematic liquid crystals has recently made it possible to derive the universal mean-field phase diagram for all quadrupolar interactions between nematogenic biaxial molecules, including those rendering the mean-field free energy indefinit...

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Veröffentlicht in:Archive for rational mechanics and analysis 2010-04, Vol.196 (1), p.143-189
Hauptverfasser: Gartland, Eugene C., Virga, Epifanio G.
Format: Artikel
Sprache:eng
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Zusammenfassung:The extension of Bogoliubov Jr.’s minimax principle to biaxial nematic liquid crystals has recently made it possible to derive the universal mean-field phase diagram for all quadrupolar interactions between nematogenic biaxial molecules, including those rendering the mean-field free energy indefinite. To justify this extension, so far largely based on heuristic arguments, we prove here a minimum principle that also applies when is indefinite. Bogoliubov Jr.’s minimax principle then emerges as a characterization of this minimum principle. The theory presented here is more general than its application to biaxial nematic liquid crystals could reveal. It essentially builds upon a concavity property of in the order tensor associated with the repulsive component of the molecular interaction.
ISSN:0003-9527
1432-0673
DOI:10.1007/s00205-009-0238-5