论文标题

相关基态的几个体性质

Few-body nature of Kondo correlated ground states

论文作者

Debertolis, Maxime, Florens, Serge, Snyman, Izak

论文摘要

金属中退化杂质状态的淬灭通常会诱导一种被称为近距近距离筛选云的远程相关量子状态。虽然宏观数量的颗粒显然参与了这种扩展的结构,但评估真正纠缠的自由度的数量需要仔细分析相关的多体波函数。为此,我们研究了两个量子杂质问题的基态的单粒子密度(相关)矩阵的自然单粒子轨道:相互作用的谐振水平模型(IRLM)和单个杂质Anderson Anderson模型(SIAM)。作为对几个身体与多体性特征的简单探针,我们考虑了相关矩阵特征值的指数衰减速率朝向非活动(完全空或填充)轨道。我们发现,在物理上最相关的参数空间区域中,该速率仍然很大,这意味着几个体格。真正的多体相关性仅在近托温度成倍小时(例如在量子临界点附近)时才出现。此外,我们证明了几个身体问题的简单数值对角线限制在最相关的轨道的Fock空间中,相对于轨道数量,轨道数量成倍地收敛到IRLM的真实基态。我们还表明,有限尺寸效应会严重影响相关光谱,从而阐明了先前关于短链的研究引起的明显悖论。

The quenching of degenerate impurity states in metals generally induces a long-range correlated quantum state known as the Kondo screening cloud. While a macroscopic number of particles clearly take part in forming this extended structure, assessing the number of truly entangled degrees of freedom requires a careful analysis of the relevant many-body wavefunction. For this purpose, we examine the natural single-particle orbitals that are eigenstates of the single-particle density (correlation) matrix for the ground state of two quantum impurity problems: the interacting resonant level model (IRLM) and the single impurity Anderson model (SIAM). As a simple and general probe for few-body versus many-body character we consider the rate of exponential decay of the correlation matrix eigenvalues towards inactive (fully empty or filled) orbitals. We find that this rate remains large in the physically most relevant region of parameter space, implying a few-body character. Genuine many-body correlations emerge only when the Kondo temperature becomes exponentially small, for instance near a quantum critical point. In addition, we demonstrate that a simple numerical diagonalization of the few-body problem restricted to the Fock space of the most correlated orbitals converges exponentially fast with respect to the number of orbitals, to the true ground state of the IRLM. We also show that finite size effects drastically affect the correlation spectrum, shedding light on an apparent paradox arising from previous studies on short chains.

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