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Thermodynamics of Two-Component Log-Gases with Alternating Charges

机译:带有交替电荷的双组分对数气体的热力学

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We consider a one-dimensional gas of positive and negative unit charges interacting via a logarithmic potential, which is in thermal equilibrium at the (dimensionless) inverse temperature β. In a previous paper [?amaj, L. in J. Stat. Phys. 105:173-191, 2001], the exact thermodynamics of the unrestricted log-gas of pointlike charges was obtained using an equivalence with a (1 + 1)-dimensional boundary sine-Gordon model. The present aim is to extend the exact study of the thermodynamics to the log-gas on a line with alternating ± charges. The formula for the ordered grand partition function is obtained by using the exact results of the Thermodynamic Bethe ansatz. The complete thermodynamics of the ordered log-gas with pointlike charges is checked by a small-β expansion and at the collapse point β_c = 1. The inclusion of a small hard core around particles permits us to go beyond the collapse point. The differences between the unconstrained and ordered versions of the log-gas are pointed out.
机译:我们考虑正负单位电荷的一维气体通过对数电位相互作用,该对数电位在(无因次)逆温度β处处于热平衡状态。在先前的论文[?amaj,L. in J. Stat。物理105:173-191,2001],使用等价于(1 +1)维边界正弦-戈登模型,获得了点状电荷无限制对数气体的精确热力学。目前的目的是将热力学的精确研究扩展到具有交替±电荷的线上的对数气体。通过使用热力学Bethe ansatz的精确结果,可以获得有序的大分区函数的公式。带点状电荷的有序对数气体的完整热力学通过小β膨胀和塌陷点β_c= 1来检查。在颗粒周围包含小的硬核可以使我们超越塌陷点。指出了日志气体的无约束版本和有序版本之间的差异。

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