论文标题
密切相关的多障碍模型:从单障碍问题到晶格模型的交叉
Strongly correlated multi-impurity models: The crossover from a single-impurity problem to lattice models
论文作者
论文摘要
我们提供了相关的多突击模型的映射,以与许多有效的导带捕获其必不可少的低能物理学。主要成分是不相关问题的复杂单粒子自能矩阵,该矩阵将对宿主传导带的影响编码到一组相关轨道的动力学上。虽然自我能源矩阵的实际部分在簇轨道之间产生有效的跳跃,但假想部分决定了与映射模型中有效的传导带的耦合。假想部分的等级决定了问题的独立筛选通道的数量,并允许通过严格的数学陈述更换现象学耗尽标准。该等级提供了第一类和第二类的多冲突模型的区别。对于后者,可用的筛选通道不足,因此单线基态必须由集群间的自旋相关性驱动。该分类为为什么在稀释的杂质模型中与自旋补偿基态之间的铁磁相关性的问题提供了一个基本答案,而他们在密集的杂质阵列中与亲kondo级竞争,而不会唤起旋转密度波。从映射模型的分析结构中得出了三个示例的三个示例的低温物理学,证明了这种方法的潜在力量。 NRG计算最多可用于五个站点群集。我们研究了挫败感引起的非FERMI液体固定点的出现,并证明了KT类型的几个关键点的存在,其中铁磁相关性抑制了筛选额外的有效旋转-1/2 $ $自由度的筛选。
We present a mapping of correlated multi-impurity Anderson models to a cluster model coupled to a number of effective conduction bands capturing its essential low-energy physics. The major ingredient is the complex single-particle self energy matrix of the uncorrelated problem that encodes the influence to the host conduction band onto the dynamics of a set of correlated orbitals. While the real part of the self-energy matrix generates an effective hopping between the cluster orbitals, the imaginary part determines the coupling to the effective conduction bands in the mapped model. The rank of the imaginary part determines the number of independent screening channels of the problem, and allows the replacement of the phenomenological exhaustion criterion by a rigorous mathematical statement. This rank provides a distinction between multi-impurity models of first kind and of second kind. For the latter, there are insufficient screening channels available, so that a singlet ground state must be driven by the inter-cluster spin correlations. This classification provides a fundamental answer to the question of why ferromagnetic correlations between local moments are irrelevant for the spin compensated ground state in dilute impurity models, whereas they compete with the Kondo-scale in dense impurity arrays, without evoking a spin density wave. The low-temperature physics of three examples taken from the literature are deduced from the analytic structure of the mapped model, demonstrating the potential power of this approach. NRG calculations are presented for up to five site cluster. We investigate the appearance of frustration induced non-Fermi liquid fixed points in the trimer, and demonstrate the existence of several critical points of KT type at which ferromagnetic correlations suppress the screening of an additional effective spin-$1/2$ degree of freedom.