论文标题
自旋 - 偏置伪PSEUDOGAP BOSE-FERMI KONDO模型中的量子关键性:熵,缩放和G理论
Quantum criticality in the spin-isotropic pseudogap Bose-Fermi Kondo model: entropy, scaling, and the g-theorem
论文作者
论文摘要
我们研究了动态较大的$ n $限制中pseudogap bose-fermi kondo模型的熵的行为,其中$ n $与模型的对称组有关。该模型是一个通用的量子杂质模型,它描述了一个局部水平,该局部水平与费米子浴有密度的状态密度,该状态以Fermi Energy附近的PowerLaw方式消失,并与具有截止能量以下的PowerLaw光谱密度的波音浴室。随着耦合到浴的函数,可能会发生各种量子相变。我们研究了这些零温过渡的杂质熵如何变化,并将我们的结果与基于G理论的预测进行比较。这是通过对领先和子领先缩放行为的分析来完成的。我们的分析表明,$ g $ - 理论不适用于大N级的伪造bose-fermi kondo模型。这种不适用性起源于对水动力制度中缩放函数的异常贡献,其中$ k_b t> \ hbarω$在量子相干式中不存在,即,对于$ k_b t <\ \ hbarω$。我们还将我们的结果与Sachdev-Ye-Kitaev模型获得的结果进行了比较。
We study the behavior of the entropy of the pseudogap Bose-Fermi Kondo model within a dynamical large-$N$ limit, where $N$ is related to the symmetry group of the model. This model is a general quantum impurity model that describes a localized level coupled to a fermionic bath having a density of states that vanishes in a powerlaw fashion near the Fermi energy and to a bosonic bath possessing a powerlaw spectral density below a cutoff energy. As a function of the couplings to the baths various quantum phase transitions can occur. We study how the impurity entropy changes across these zero-temperature transitions and compare our results with predictions based on the g-theorem. This is accomplished by an analysis of the leading and sub-leading scaling behavior. Our analysis shows that the $g$-theorem does not apply to the pseudogap Bose-Fermi Kondo model at the large-N level. This inapplicability originates from an anomalous contribution to the scaling function in the hydrodynamic regime where $k_B T>\hbar ω$ which is absent in the quantum coherent regime, i.e., for $k_B T<\hbar ω$. We also compare our results with those obtained for the Sachdev-Ye-Kitaev model.