The effects of downfolding a Brillouin zone can open gaps and quench the kinetic energy by flattening bands. Quasiperiodic systems are extreme examples of this process, which leads to new phases and critical eigenstates. We analytically and numerically investigate these effects in a two-dimensional topological insulator with a quasiperiodic potential and discover a complex phase diagram. We study the nature of the resulting eigenstate quantum phase transitions; a quasiperiodic potential can make a trivial insulator topological and induce topological insulator-to-metal phase transitions through a unique universality class distinct from random systems. This wealth of critical behavior occurs concomitantly with the quenching of the kinetic ene...
In the absence of spin-orbit coupling, the conventional dogma of Anderson localization asserts that ...
International audiencePeriodic stacking of topologically trivial and non-trivial layers with opposit...
In search of materials with three-dimensional flat band dispersions, using ab initio computations we...
The topological materials have been theoretically and experimentally studied intensively in the past...
One-dimensional all-bands-flat lattices are networks with all bands being flat and highly degenerate...
In this thesis we explore how geometrical and topological ideas from band theory can be extended to ...
In this paper, the influence of the quasidisorder on a two-dimensional system is studied. We find th...
Topological insulators and their intriguing edge states can be understood in a single-particle pictu...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
The commonly adopted classification of the electronic phases of matter as metals, insulators, semime...
We introduce the exceptional topological insulator (ETI), a non-Hermitian topological state of matte...
We introduce the exceptional topological insulator (ETI), a non-Hermitian topological state of matte...
We introduce the exceptional topological insulator (ETI), a non-Hermitian topological state of matte...
We introduce the exceptional topological insulator (ETI), a non-Hermitian topological state of matte...
We introduce the exceptional topological insulator (ETI), a non-Hermitian topological state of matte...
In the absence of spin-orbit coupling, the conventional dogma of Anderson localization asserts that ...
International audiencePeriodic stacking of topologically trivial and non-trivial layers with opposit...
In search of materials with three-dimensional flat band dispersions, using ab initio computations we...
The topological materials have been theoretically and experimentally studied intensively in the past...
One-dimensional all-bands-flat lattices are networks with all bands being flat and highly degenerate...
In this thesis we explore how geometrical and topological ideas from band theory can be extended to ...
In this paper, the influence of the quasidisorder on a two-dimensional system is studied. We find th...
Topological insulators and their intriguing edge states can be understood in a single-particle pictu...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
The commonly adopted classification of the electronic phases of matter as metals, insulators, semime...
We introduce the exceptional topological insulator (ETI), a non-Hermitian topological state of matte...
We introduce the exceptional topological insulator (ETI), a non-Hermitian topological state of matte...
We introduce the exceptional topological insulator (ETI), a non-Hermitian topological state of matte...
We introduce the exceptional topological insulator (ETI), a non-Hermitian topological state of matte...
We introduce the exceptional topological insulator (ETI), a non-Hermitian topological state of matte...
In the absence of spin-orbit coupling, the conventional dogma of Anderson localization asserts that ...
International audiencePeriodic stacking of topologically trivial and non-trivial layers with opposit...
In search of materials with three-dimensional flat band dispersions, using ab initio computations we...