Natural orbitals renormalization group approach to a spin-1/2 impurity interacting with two helical liquids
arXiv:2303.14331 · doi:10.1103/PhysRevB.107.115149
Abstract
Using the natural orbitals renormalization group, we studied the problem of a localized spin- 1/2 impurity coupled to two helical liquids via the Kondo interaction in a quantum spin Hall insulator, based on the Kane-Mele model defined in a finite zigzag graphene nanoribbon. We investigated the influence of the Kondo couplings with the helical liquids on both the static and dynamic properties of the ground state. The number and distinct spatial structures of the active natural orbitals (ANOs), which play essential roles in constructing the ground-state wave function, were first analyzed. Our numerical results indicate that two ANOs emerge, equal to the number of helical liquids. Specifically, at the coupling symmetry point, both ANOs are fully active with their spatial structures being respectively constituted by the different helical liquids. In comparison, when deviating from the symmetry point, only one ANO remains fully active, which is dominantly constructed by the helical liquid with the larger Kondo coupling. Local screening of the impurity, described by the impurity spin polarization and susceptibility, was further studied. It shows that at the coupling symmetry point, the impurity is maximally polarized and the spin susceptibility reaches the maximum. On the contrary, the impurity tends to be screened without polarization when the Kondo couplings deviate well from the symmetry point. The Kondo screening cloud, manifested by the spin correlation between the impurity and the conduction electrons, was finally explored. It is demonstrated that the Kondo cloud is mainly formed by the helical liquid with the larger Kondo coupling to the impurity. On the other hand, the spin-orbital coupling breaks the symmetry in spatial distribution of the spin correlation, leading to anisotropy in the Kondo cloud.
References in corpus (34)
- Electric Field Effect in Atomically Thin Carbon Films
- Quantum Spin Hall Effect and Topological Phase Transition in HgTe Quantum Wells
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- Energy Band Gap Engineering of Graphene Nanoribbons
- Energy Gaps in Graphene Nanoribbons
- Half-Metallic Graphene Nanoribbons
- Graphene Spintronics
- The Helical Liquid and the Edge of Quantum Spin Hall Systems
- Finite size effects of helical edge states in HgTe/CdTe quantum wells
- Electronic transport and quantum Hall effect in bipolar graphene p-n-p junction
- Observation of the two-channel Kondo effect
- Half-metallic graphene nanodots
- Kondo effect in the helical edge liquid of the quantum spin Hall state
- Conductance of a helical edge liquid coupled to a magnetic impurity
- Truncated Configuration Interaction expansions as solvers for correlated quantum impurity models and dynamical mean field theory
- Long-range Kondo signature of a single magnetic impurity
- Kondo screening cloud in a one dimensional wire: Numerical renormalization group study
- Friedel oscillations and the Kondo screening cloud
- Spin Correlations and Finite-Size Effects in the One-dimensional Kondo Box
- Kondo lattice on the edge of a two-dimensional topological insulator
- Optimizing Hartree-Fock orbitals by the density-matrix renormalization group
- Quantitative Calculation of the Spatial Extension of the Kondo Cloud
- Exact results for the Kondo screening cloud of two helical liquids
- Block Lanczos density-matrix renormalization group method for general Anderson impurity models: Application to magnetic impurity problems in graphene
- Kondo screening cloud and the charge staircase in one-dimensional mesoscopic devices
- Kondo effect in graphene with Rashba spin-orbit coupling
- Natural Orbitals Renormalization Group Approach to the Two-Impurity Kondo Critical Point
- Kondo effect in a quantum wire with spin-orbit coupling
- Two-channel Kondo physics due to As vacancies in the layered compound ZrAs1.58Se0.39
- Spatial structure of correlations around a quantum impurity at the edge of a two-dimensional topological insulator
- Interplay of Coulomb interaction and spin-orbit effects in multi-level quantum dots
- An Anderson impurity interacting with the helical edge states in a quantum spin Hall insulator
- Order parameter for the multichannel Kondo model at quantum criticality
- Magnetic correlation between two local spins in a quantum spin Hall insulator