English

Flat bands in fractal-like geometry

Disordered Systems and Neural Networks 2018-05-02 v2 Mesoscale and Nanoscale Physics

Abstract

We report the presence of multiple flat bands in a class of two-dimensional (2D) lattices formed by Sierpinski gasket (SPG) fractal geometries as the basic unit cells. Solving the tight-binding Hamiltonian for such lattices with different generations of a SPG network, we find multiple degenerate and non-degenerate completely flat bands, depending on the configuration of parameters of the Hamiltonian. Moreover, we find a generic formula to determine the number of such bands as a function of the generation index \ell of the fractal geometry. We show that the flat bands and their neighboring dispersive bands have remarkable features, the most interesting one being the spin-1 conical-type spectrum at the band center without any staggered magnetic flux, in contrast to the Kagome lattice. We furthermore investigate the effect of the magnetic flux in these lattice settings and show that different combinations of fluxes through such fractal unit cells lead to richer spectrum with a single isolated flat band or gapless electron- or hole-like flat bands. Finally, we discuss a possible experimental setup to engineer such fractal flat band network using single-mode laser-induced photonic waveguides.

Keywords

Cite

@article{arxiv.1711.11402,
  title  = {Flat bands in fractal-like geometry},
  author = {Biplab Pal and Kush Saha},
  journal= {arXiv preprint arXiv:1711.11402},
  year   = {2018}
}

Comments

8 pages, 9 figures, accepted version

R2 v1 2026-06-22T23:02:24.664Z