Laboratoire de Physique Théorique (IRSAMC), Université de Toulouse, UPS and CNRS, F-31062 Toulouse, France.
J Chem Phys. 2012 Aug 14;137(6):064901. doi: 10.1063/1.4740233.
The one-dimensional Coulomb lattice fluid in a capacitor configuration is studied. The model is formally exactly soluble via a transfer operator method within a field theoretic representation of the model. The only interactions present in the model are the one-dimensional Coulomb interaction between cations and anions and the steric interaction imposed by restricting the maximal occupancy at any lattice site to one particle. Despite the simplicity of the model, a wide range of intriguing physical phenomena arise, some of which are strongly reminiscent of those seen in experiments and numerical simulations of three-dimensional ionic liquid based capacitors. Notably, we find regimes where over-screening and density oscillations are seen near the capacitor plates. The capacitance is also shown to exhibit strong oscillations as a function of applied voltage. It is also shown that the corresponding mean-field theory misses most of these effects. The analytical results are confirmed by extensive numerical simulations.
研究了电容器构型中的一维库仑格流体。该模型通过模型的场论表示中的转移算符方法进行了形式上的精确求解。该模型中仅存在阳离子和阴离子之间的一维库仑相互作用以及通过限制任何晶格位置的最大占据数为一个粒子施加的位阻相互作用。尽管模型很简单,但出现了广泛的有趣物理现象,其中一些现象强烈地让人联想到在实验和基于三维离子液体的电容器的数值模拟中看到的现象。值得注意的是,我们发现了在电容器极板附近出现过屏蔽和密度振荡的区域。电容也被证明随着外加电压的变化呈现强烈的振荡。还表明,相应的平均场理论忽略了大部分这些效应。分析结果通过广泛的数值模拟得到了验证。