首页> 外文期刊>The European physical journal, E. Soft matter >Biaxial nematic phase in the Maier-Saupe model for a mixture of discs and cylinders
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Biaxial nematic phase in the Maier-Saupe model for a mixture of discs and cylinders

机译:Maier-Saupe模型中的双轴向列相,用于圆盘和圆柱体的混合物

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We analyze the global phase diagram of a Maier-Saupe lattice model with the inclusion of shapedisordered degrees of freedom to mimic a mixture of oblate and prolate molecules (discs and cylinders). In the neighborhood of a Landau multicritical point, solutions of the statistical problem can be written as a Landau-de Gennes expansion for the free energy. If the shape-disordered degrees of freedom are quenched, we confirm the existence of a biaxial nematic structure. If orientational and disorder degrees of freedom are allowed to thermalize, this biaxial solution becomes thermodynamically unstable. Also, we use a twotemperature formalism to mimic the presence of two distinct relaxation times, and show that a slight departure from complete thermalization is enough to stabilize a biaxial nematic phase.
机译:我们分析了Maier-Saupe晶格模型的整体相图,其中包括形状无序的自由度,以模拟扁圆形和扁圆形分子(圆盘和圆柱体)的混合物。在Landau多临界点附近,可以将统计问题的解决方案写为自由能的Landau-de Gennes展开。如果形状无序的自由度被淬灭,我们证实存在双轴向列结构。如果允许取向自由度和无序自由度热化,则该双轴解将变得热力学不稳定。此外,我们使用了双温度形式主义来模拟两个不同弛豫时间的存在,并表明完全完全热化的轻微偏离足以稳定双轴向列相。

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