Kondo lattice on the edge of a two-dimensional topological insulator
arXiv:1204.0017 · doi:10.1103/PhysRevB.85.245108
Abstract
We revisit the problem of a single quantum impurity on the edge of a two-dimensional time-reversal invariant topological insulator and show that the zero temperature phase diagram contains a large local moment region for antiferromagnetic Kondo coupling which was missed by previous poor man's scaling treatments. The combination of an exact solution at the so-called decoupling point and a renormalization group analysis à la Anderson-Yuval-Hamann allows us to access the regime of strong electron-electron interactions on the edge and strong Kondo coupling. We apply similar methods to the problem of a regular one-dimensional array of quantum impurities interacting with the edge liquid. When the edge electrons are at half-filling with respect to the impurity lattice, the system remains gapless unless the Luttinger parameter of the edge is less than 1/2, in which case two-particle backscattering effects drive the system to a gapped phase with long-range Ising antiferromagnetic order. This is in marked contrast with the gapped disordered ground state of the ordinary half-filled one-dimensional Kondo lattice.
18 pages, 3 figures; fixed typos, updated references
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- An Anderson impurity interacting with the helical edge states in a quantum spin Hall insulator
- Suppression of ballistic helical transport by isotropic dynamical magnetic impurities
- Two-channel Kondo problem in coupled interacting helical liquids
- Chiral detection of Majorana bound states at the edge of a quantum spin Hall insulator
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- Spin-polarized voltage probes for helical edge state: a model study
- Natural orbitals renormalization group approach to a spin-1/2 impurity interacting with two helical liquids
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- Cyclotron Dynamics of a Kondo Singlet in a Spin-Orbit-Coupled Alkaline-Earth Atomic Gas
- Robust Majorana bound state in pseudo-spin domain wall of 2-D topological insulator
- Dominant superconducting correlations in a Luttinger liquid induced by spin fluctuations