The mathematical field of topology has become a framework in which to describe the low-energy electronic structure of crystalline solids. Typical of a bulk insulating three-dimensional topological crystal are conducting two-dimensional surface states. This constitutes the topological bulk–boundary correspondence. Here, we establish that the electronic structure of bismuth, an element consistently described as bulk topologically trivial, is in fact topological and follows a generalized bulk–boundary correspondence of higher-order: not the surfaces of the crystal, but its hinges host topologically protected conducting modes. These hinge modes are protected against localization by time-reversal symmetry locally, and globally by the three-fold ...
Topological crystalline insulators are a type of topological insulators whose topological surface st...
While first-principles calculations with different levels of sophistication predict a topologically ...
The electronic band structure of Bi is calculated using state of the art electronic structure method...
International audienceThe mathematical field of topology has become a framework in which to describe...
Bismuth-based materials have been instrumental in the development of topological physics, even thoug...
Three-dimensional topological (crystalline) insulators are materials with an insulating bulk but con...
The growing diversity of topological classes leads to ambiguity between classes that share similar b...
The major breakthroughs in understanding of topological materials over the past decade were all trig...
Bismuth is gaining importance as a key element of functional quantum materials. The effects of spin-...
Commonly, materials are classified as either electrical conductors or insulators. The theoretical di...
Topological materials hosting metallic edges characterized by integer quantized conductivity in an i...
Three-dimensional topological (crystalline) insulators are materials with an insulating bulk but con...
Recent theoretical studies employing density-functional theory have predicted BaBiO\(_{3}\) (when do...
Bismuth-chalchogenides are model examples of three-dimensional topological insulators. Their ideal b...
With its monoelemental composition, various crystalline forms and an inherently strong spin-orbit co...
Topological crystalline insulators are a type of topological insulators whose topological surface st...
While first-principles calculations with different levels of sophistication predict a topologically ...
The electronic band structure of Bi is calculated using state of the art electronic structure method...
International audienceThe mathematical field of topology has become a framework in which to describe...
Bismuth-based materials have been instrumental in the development of topological physics, even thoug...
Three-dimensional topological (crystalline) insulators are materials with an insulating bulk but con...
The growing diversity of topological classes leads to ambiguity between classes that share similar b...
The major breakthroughs in understanding of topological materials over the past decade were all trig...
Bismuth is gaining importance as a key element of functional quantum materials. The effects of spin-...
Commonly, materials are classified as either electrical conductors or insulators. The theoretical di...
Topological materials hosting metallic edges characterized by integer quantized conductivity in an i...
Three-dimensional topological (crystalline) insulators are materials with an insulating bulk but con...
Recent theoretical studies employing density-functional theory have predicted BaBiO\(_{3}\) (when do...
Bismuth-chalchogenides are model examples of three-dimensional topological insulators. Their ideal b...
With its monoelemental composition, various crystalline forms and an inherently strong spin-orbit co...
Topological crystalline insulators are a type of topological insulators whose topological surface st...
While first-principles calculations with different levels of sophistication predict a topologically ...
The electronic band structure of Bi is calculated using state of the art electronic structure method...