While first-principles calculations with different levels of sophistication predict a topologically trivial Z2 state for bulk bismuth, some photoemission experiments show surface states consistent with the interpretation of bismuth being in a topologically nontrivial Z2 state. We resolve this contradiction between theory and experiment by showing, based on quasiparticle self-consistent GW calculations, that the experimental surface states interpreted as supporting a nontrivial phase are actually consistent with a trivial Z2 invariant. We identify this contradiction as the result of a crosstalk effect arising from the extreme penetration depth of the surface states into the bulk of Bi. A film of Bi can be considered bulklike only for thickne...
Two-dimensional bismuth (Bi) layer, known as bismuthene, exhibits Z2 topological bulk states due to ...
International audienceWe review measurements of angle and time resolved photoelectron spectroscopy o...
Recent progress in the field of topological states of matter(1,2) has largely been initiated by the ...
International audienceThe mathematical field of topology has become a framework in which to describe...
International audienceThe goal of the present review is to cross-compare theoretical predictions wit...
Recent progress in the field of topological states of matter has largely been initiated by the disco...
Recent progress in the field of topological states of matter has largely been initiated by the disco...
Bismuth-based materials have been instrumental in the development of topological physics, even thoug...
The major breakthroughs in understanding of topological materials over the past decade were all trig...
The growing diversity of topological classes leads to ambiguity between classes that share similar b...
There is a standing fundamental issue of topological insulators that their theoretically predicted n...
The electronic band structure of Bi is calculated using state of the art electronic structure method...
Two-dimensional bismuth (Bi) layer, known as bismuthene, exhibits Z2 topological bulk states due to ...
International audienceWe review measurements of angle and time resolved photoelectron spectroscopy o...
Recent progress in the field of topological states of matter(1,2) has largely been initiated by the ...
International audienceThe mathematical field of topology has become a framework in which to describe...
International audienceThe goal of the present review is to cross-compare theoretical predictions wit...
Recent progress in the field of topological states of matter has largely been initiated by the disco...
Recent progress in the field of topological states of matter has largely been initiated by the disco...
Bismuth-based materials have been instrumental in the development of topological physics, even thoug...
The major breakthroughs in understanding of topological materials over the past decade were all trig...
The growing diversity of topological classes leads to ambiguity between classes that share similar b...
There is a standing fundamental issue of topological insulators that their theoretically predicted n...
The electronic band structure of Bi is calculated using state of the art electronic structure method...
Two-dimensional bismuth (Bi) layer, known as bismuthene, exhibits Z2 topological bulk states due to ...
International audienceWe review measurements of angle and time resolved photoelectron spectroscopy o...
Recent progress in the field of topological states of matter(1,2) has largely been initiated by the ...