arXiv · 0909.2465
Quantum spin Hall effect and spin-charge separation in a kagome lattice
Abstract
A two-dimensional kagome lattice is theoretically investigated within a simple tight-binding model, which includes the nearest neighbor hopping term and the intrinsic spin-orbit interaction between the next nearest neighbors. By using the topological winding properties of the spin-edge states on the complex-energy Riemann surface, the spin Hall conductance is obtained to be quantized as $-e/2π$ ($e/2π$) in insulating phases. This result keeps consistent with the numerical linear-response calculation and the \textbf{Z}$_{2}$ topological invariance analysis. When the sample boundaries are connected in twist, by which two defects with $π$ flux are introduced, we obtain the spin-charge separated solitons at 1/3 (or 2/3) filling.
Explore related subjects
Keep this discovery
Explore connections, maps & timelines
Zhigang Wang, Ping Zhang. 2011-08-02. Quantum spin Hall effect and spin-charge separation in a kagome lattice. https://doi.org/10.1088/1367-2630%2F12%2F4%2F043055
Cite the original work for its findings. Save a collection to share your selection of sources.