首页> 外文期刊>Journal of Statistical Physics >JANCOS DISCIPLES IN COULOMBLAND .1. THE 2D CLASSICAL COULOMB GAS NEAR THE ZERO-DENSITY KOSTERLITZ-THOULESS CRITICAL POINT - CORRELATIONS AND CRITICAL LINE
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JANCOS DISCIPLES IN COULOMBLAND .1. THE 2D CLASSICAL COULOMB GAS NEAR THE ZERO-DENSITY KOSTERLITZ-THOULESS CRITICAL POINT - CORRELATIONS AND CRITICAL LINE

机译:詹科斯(Jancos)在库伦的弟子们1。零密度科斯特利兹无极限临界点附近的二维库仑气体-相关性和临界线

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The 2D classical Coulomb gas undergoes the famous Kosterlitz-Thouless (KT) transition between a high-temperature conducting phase and a low-temperature insulating phase. We present various studies of the correlations in the insulating phase near the zero-density critical point. First, we briefly recall the phenomenological approach of Kosterlitz and Thouless. This theory predicts that the decay of the charge correlation is entirely controlled by the bare Coulomb potential between opposite charges only renormalized by the dielectric constant epsilon. Then, we present an analysis of the low-fugacity expansions of the correlations. The particle correlations are found to decay as 1/r(4). The large-distance decay of the charge correlation is shown to be tightly related to the behavior of 1 epsilon in the regime of interest. Systematic resummations allow one to recover the algebraic decay predicted by the heuristic KT model. This settles on a rigorous basis various assumptions of this model. In particular, the nested pair mechanism naturally arises in the resummation scheme. Finally, we describe the phase diagram of the system according to the most recent calculations which include finite-density effects. [References: 24]
机译:2D经典库仑气体在高温传导相和低温绝缘相之间经历著名的Kosterlitz-Thouless(KT)过渡。我们对零密度临界点附近的绝缘相中的相关性进行了各种研究。首先,我们简要回顾一下Kosterlitz和Thouless的现象学方法。该理论预测,电荷相关性的衰减完全由仅由介电常数ε重新归一化的相反电荷之间的裸库仑电势控制。然后,我们对相关的低烟度展开进行分析。发现粒子相关性衰减为1 / r(4)。电荷相关性的大范围衰减被证明与1ε在感兴趣状态下的行为紧密相关。系统的恢复使人们能够恢复启发式KT模型所预测的代数衰减。这是在严格的基础上建立了该模型的各种假设。特别地,嵌套对机制自然地出现在恢复方案中。最后,我们根据包括有限密度效应在内的最新计算来描述系统的相图。 [参考:24]

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