We show that, quite generically, a [111] slab of spin-orbit coupled pyrochlore lattice exhibits surface states whose constant energy curves take the shape of Fermi arcs, localized to different surfaces depending on their quasimomentum. Remarkably, these persist independently of the existence of Weyl points in the bulk. Considering interacting electrons in slabs of finite thickness, we find a plethora of known fractional Chern insulating phases, to which we add the discovery of a new higher Chern number state which is likely a generalization of the Moore-Read fermionic fractional quantum Hall state. By contrast, in the three-dimensional limit, we argue for the absence of gapped states of the flat surface band due to a topologically protected...
An unusual electronic property of a Weyl semimetallic nanowire is revealed. Its band dispersion exhi...
It has been recently realized that strong interactions in topological Bloch bands give rise to the a...
The possibility of realizing lattice analogs of fractional quantum Hall (FQH) states, so-called frac...
Lattice models forming bands with higher Chern number offer an intriguing possibility for new phases...
Topological insulators and their intriguing edge states can be understood in a single-particle pictu...
A large number of recent works point to the emergence of intriguing analogs of fractional quantum Ha...
The hallmark of topological phases is their robust boundary signature whose intriguing properties—su...
The hallmark of topological phases is their robust boundary signature whose intriguing properties-su...
Topological insulators and their intriguing edge states can be understood in a single-particle pictu...
Strongly correlated quantum systems can exhibit exotic behavior controlled by topology. We predict t...
We study the phase diagram of interacting electrons in a dispersionless Chern band as a function of ...
We show how the phases of interacting particles in topological flat bands, known as fractional Chern...
It has been recently realized that strong interactions in topological Bloch bands give rise to the a...
Strongly correlated quantum systems can exhibit exotic behavior controlled by topology. We predict t...
An unusual electronic property of a Weyl semimetallic nanowire is revealed. Its band dispersion exhi...
An unusual electronic property of a Weyl semimetallic nanowire is revealed. Its band dispersion exhi...
It has been recently realized that strong interactions in topological Bloch bands give rise to the a...
The possibility of realizing lattice analogs of fractional quantum Hall (FQH) states, so-called frac...
Lattice models forming bands with higher Chern number offer an intriguing possibility for new phases...
Topological insulators and their intriguing edge states can be understood in a single-particle pictu...
A large number of recent works point to the emergence of intriguing analogs of fractional quantum Ha...
The hallmark of topological phases is their robust boundary signature whose intriguing properties—su...
The hallmark of topological phases is their robust boundary signature whose intriguing properties-su...
Topological insulators and their intriguing edge states can be understood in a single-particle pictu...
Strongly correlated quantum systems can exhibit exotic behavior controlled by topology. We predict t...
We study the phase diagram of interacting electrons in a dispersionless Chern band as a function of ...
We show how the phases of interacting particles in topological flat bands, known as fractional Chern...
It has been recently realized that strong interactions in topological Bloch bands give rise to the a...
Strongly correlated quantum systems can exhibit exotic behavior controlled by topology. We predict t...
An unusual electronic property of a Weyl semimetallic nanowire is revealed. Its band dispersion exhi...
An unusual electronic property of a Weyl semimetallic nanowire is revealed. Its band dispersion exhi...
It has been recently realized that strong interactions in topological Bloch bands give rise to the a...
The possibility of realizing lattice analogs of fractional quantum Hall (FQH) states, so-called frac...