Effect of fluctuations on the freezing of a colloidal suspension in an external periodic potential

J. Chakrabarti, S. Sinha
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引用次数: 3

Abstract

We incorporate the effects of fluctuations in a density functional analysis of the freezing of a colloidal liquid in the presence of an external potential generated by interfering laser beams. A mean-field treatment, using a density functional theory, predicts that with the increase in the strength of the modulating potential, the freezing transition changes from a first order to a continuous one via a tricritical point for a suitable choice of the modulating wavevectors. We demonstrate here that the continuous nature of the freezing transition at large values of the external potential V-e survives the presence of fluctuations. We also show that fluctuations tend to stabilize the liquid phase in the large V-e regime.
波动对胶体悬浮液在外部周期电位下冻结的影响
在干涉激光束产生的外部电位存在的情况下,我们在胶体液体冻结的密度泛函分析中纳入了波动的影响。使用密度泛函理论的平均场处理预测,随着调制电位强度的增加,冻结跃迁通过适当选择调制波矢量的三临界点从一阶变为连续跃迁。我们在这里证明,在大的外部电位V-e值下,冻结跃迁的连续性在波动的存在下仍然存在。我们还表明,波动倾向于在大V-e范围内稳定液相。
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