论文标题
强烈不均匀的Luttinger液体的密度密度相关功能
Density-density Correlation Function of Strongly Inhomogeneous Luttinger Liquids
论文作者
论文摘要
在这项工作中,我们在教学细节中表明,对渐近密度密度密度相关的缓慢部分的最大贡献与费米子相互相互作用,仅与短距离向前散射相互作用,并且在局部标量静态杂质(向后散射)中,仅在范围内均具有紧密的分析表达,并涉及第二个级别的表达,并参与了均匀的分析表达。系数。该证明使用传统的费米电扰动理论重新注重了所有订单,以及对于这样的系统,密度操作员的(连接的)矩都超出了二阶的(奇数相同的消失,甚至更高的时刻)比唯一一个包括第二阶时的奇异时刻较小。这一重要结果是对最近引入的“非手续(NCBT)研究此类系统的关键输入。 NCBT的结果不能轻易与使用常规琼脂化获得的结果进行比较,因为前者唯一提取了相关函数的最单一部分,尽管它具有任意的杂质强度和相互相互作用。后者雄心勃勃地尝试研究渐近相关函数的所有部分,因此无法找到简单的分析表达式,并被迫在同质系统或半线(相反的极端)附近运行。用于完全均匀的系统或其对立面。一半线,所有高阶连接的密度矩相同消失,这意味着手性琼脂化和NCBT的结果应该是相同的,实际上它们是相同的。
In this work, we show in pedagogical detail that the most singular contributions to the slow part of the asymptotic density-density correlation function of Luttinger liquids with fermions interacting mutually with only short-range forward scattering and also with localised scalar static impurities (where backward scattering takes place) has a compact analytical expression in terms of simple functions that have second order poles and involve only the scale-independent bare transmission and reflection coefficients. This proof uses conventional fermionic perturbation theory resummed to all orders, together with the idea that for such systems, the (connected) moments of the density operator all vanish beyond the second order - the odd ones vanish identically and the higher order even moments are less singular than the second order moment which is the only one included. This important result is the crucial input to the recently introduced "Non-Chiral Bosonization Technique" (NCBT) to study such systems. The results of NCBT cannot be easily compared with the results obtained using conventional bosonization as the former only extracts the most singular parts of the correlation functions albeit for arbitrary impurity strengths and mutual interactions. The latter, ambitiously attempts to study all the parts of the asymptotic correlation functions and is thereby unable to find simple analytical expressions and is forced to operate in the vicinity of the homogeneous system or the half line (the opposite extreme). For a fully homogeneous system or its antithesis viz. the half-line, all the higher order connected moments of the density vanish identically which means the results of chiral bosonization and NCBT ought to be the same and indeed they are.