It is well known that the three-dimensional (3D) electronic topological insulator (TI) with charge-conservation and time-reversal symmetry cannot have a trivial insulating surface that preserves symmetry. It is often implicitly assumed that if the TI surface preserves both symmetries then it must be gapless. Here we show that it is possible for the TI surface to be both gapped and symmetry preserving, at the expense of having surface-topological order. In contrast to analogous bosonic topological insulators, this symmetric surface topological order is intrinsically non-Abelian. We show that the surface-topological order provides a complete nonperturbative definition of the electron TI that transcends a free-particle band-structure picture, ...
We show that the chiral Dirac and Majorana hinge modes in three-dimensional higher-order topological...
We show that the gapless boundary signatures - namely, chiral/helical hinge modes or localized zero ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
The rich variety of crystalline symmetries in solids leads to a plethora of topological crystalline ...
Topological insulators and topological crystalline insulators are materials that have a bulk band st...
Topological insulators and topological crystalline insulators are materials that have a bulk band st...
Topological insulators and topological crystalline insulators are materials that have a bulk band st...
Topological insulators and topological crystalline insulators are materials that have a bulk band st...
We show that the gapless boundary signatures—namely, chiral/helical hinge modes or localized zero mo...
An important goal of condensed matter physics is to search for new phases of matter. This thesis is ...
An important goal of condensed matter physics is to search for new phases of matter. This thesis is ...
We describe recent progress in our understanding of the interplay between interactions, symmetry, an...
Three-dimensional topological (crystalline) insulators are materials with an insulating bulk but con...
The topological classication of condensed matter is a central topic in the last decade. Using the co...
We show that boundaries of 3D weak topological insulators can become gapped by strong interactions w...
We show that the chiral Dirac and Majorana hinge modes in three-dimensional higher-order topological...
We show that the gapless boundary signatures - namely, chiral/helical hinge modes or localized zero ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...
The rich variety of crystalline symmetries in solids leads to a plethora of topological crystalline ...
Topological insulators and topological crystalline insulators are materials that have a bulk band st...
Topological insulators and topological crystalline insulators are materials that have a bulk band st...
Topological insulators and topological crystalline insulators are materials that have a bulk band st...
Topological insulators and topological crystalline insulators are materials that have a bulk band st...
We show that the gapless boundary signatures—namely, chiral/helical hinge modes or localized zero mo...
An important goal of condensed matter physics is to search for new phases of matter. This thesis is ...
An important goal of condensed matter physics is to search for new phases of matter. This thesis is ...
We describe recent progress in our understanding of the interplay between interactions, symmetry, an...
Three-dimensional topological (crystalline) insulators are materials with an insulating bulk but con...
The topological classication of condensed matter is a central topic in the last decade. Using the co...
We show that boundaries of 3D weak topological insulators can become gapped by strong interactions w...
We show that the chiral Dirac and Majorana hinge modes in three-dimensional higher-order topological...
We show that the gapless boundary signatures - namely, chiral/helical hinge modes or localized zero ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Physics, 2015.Cataloged from PD...