Chiral Lattice Supersolid on Edges of Quantum Spin Hall Samples
arXiv:1710.07848 · doi:10.1103/PhysRevB.98.081118
Abstract
We show that edges of Quantum Spin Hall topological insulators represent a natural platform for realization of exotic supersolid phase. On one hand, fermionic edge modes are helical due to the nontrivial topology of the bulk. On the other hand, a disorder at the edge or magnetic adatoms may produce a dense array of localized spins interacting with the helical electrons. The spin subsystem is magnetically frustrated since the indirect exchange favors formation of helical spin order and the direct one favors (anti)ferromagnetic ordering of the spins. At a moderately strong direct exchange, the competition between these spin interactions results in the spontaneous breaking of parity and in the Ising type order of the -components at zero temperature. If the total spin is conserved the spin order does not pin a collective massless helical mode which supports the ideal transport. In this case, the phase transition converts the helical spin order to the order of a chiral lattice supersolid. This represents a radically new possibility for experimental studies of the elusive supersolidity.
5+ pages, 2 figures
References in corpus (12)
- Quantum Spin Hall Insulator State in HgTe Quantum Wells
- The Helical Liquid and the Edge of Quantum Spin Hall Systems
- Observation of the supersolid stripe phase in spin-orbit coupled Bose-Einstein condensates
- Supersolid formation in a quantum gas breaking continuous translational symmetry
- Kondo effect in the helical edge liquid of the quantum spin Hall state
- Conductance of a helical edge liquid coupled to a magnetic impurity
- The fate of vacancy-induced supersolidity in 4He
- Resistance of helical edges formed in a semiconductor heterostructure
- Conductivity of a generic helical liquid
- Effects of nuclear spins on the transport properties of the edge of two-dimensional topological insulators
- Kondo lattice on the edge of a two-dimensional topological insulator
- Chiral Spin Order in Kondo-Heisenberg systems
Cited by in corpus (6)
- Physics of Arbitrary Doped Kondo Lattices: from a Commensurate Insulator to a Heavy Luttinger Liquid and a Protected Helical Metal
- Protection of Edge transport in Quantum Spin Hall samples: Spin-Symmetry Based General Approach and Examples
- Suppression of ballistic helical transport by isotropic dynamical magnetic impurities
- Band manipulation and spin texture in interacting moiré helical edges
- RKKY to Kondo crossover in Helical Edge of a Topological Insulator
- Transport in Magnetically Doped One-Dimensional Wires: Can the Helical Protection Emerge without the Global Helicity?