Topological insulators are characterized by an inverted band structure in the bulk and metallic surface states on the surface. In LaBi, a semimetal with a band inversion equivalent to a topological insulator, we observe surface-state-like behavior in the magnetoresistance. The electrons responsible for this pseudo-two-dimensional transport, however, originate from the bulk states rather topological surface states, which is witnessed by the angle-dependent quantum oscillations of the magnetoresistance and ab initio calculations. As a consequence, the magnetoresistance exhibits strong anisotropy with large amplitude (similar to 10(5)%)
is a layered van der Waals semimetal with several inverted band gaps throughout the entire Brillouin...
Topological insulators are insulating materials that display massless, Dirac-like surface states in ...
International audienceQuantum materials harbor a cornucopia of exotic transport phenomena challengin...
Topological insulators are characterized by an inverted band structure in the bulk and metallic surf...
The rare-earth monopnictide LaBi exhibits exotic magneto-transport properties, including an extremel...
The recent discovery of the extreme magnetoresistance (XMR) in the nonmagnetic rare-earth monopnicti...
LaBi is a three-dimensional rocksalt-type material with a surprisingly quasi-two-dimensional electro...
The present work describes the magnetotransport studies of topological-surface state (SS) in metalli...
Magnetoresistance in novel materials has been attracting ever-increasing attention since its mechani...
We show that the surface states of pristine 3D topological insulators (TIs) are analogs of ferromagn...
We report a detailed magnetotransport study on single crystals of PrBi. The presence of f electrons ...
Topological materials often exhibit remarkably linear nonsaturating magnetoresistance (LMR), which i...
This thesis investigates the electronic structure of four separate topological quantum material sys...
Topological insulators are insulating in the bulk but possess spin-momentum locked metallic surface ...
International audienceAbstract Spin-orbit effects appearing in topological insulators (TI) and at Ra...
is a layered van der Waals semimetal with several inverted band gaps throughout the entire Brillouin...
Topological insulators are insulating materials that display massless, Dirac-like surface states in ...
International audienceQuantum materials harbor a cornucopia of exotic transport phenomena challengin...
Topological insulators are characterized by an inverted band structure in the bulk and metallic surf...
The rare-earth monopnictide LaBi exhibits exotic magneto-transport properties, including an extremel...
The recent discovery of the extreme magnetoresistance (XMR) in the nonmagnetic rare-earth monopnicti...
LaBi is a three-dimensional rocksalt-type material with a surprisingly quasi-two-dimensional electro...
The present work describes the magnetotransport studies of topological-surface state (SS) in metalli...
Magnetoresistance in novel materials has been attracting ever-increasing attention since its mechani...
We show that the surface states of pristine 3D topological insulators (TIs) are analogs of ferromagn...
We report a detailed magnetotransport study on single crystals of PrBi. The presence of f electrons ...
Topological materials often exhibit remarkably linear nonsaturating magnetoresistance (LMR), which i...
This thesis investigates the electronic structure of four separate topological quantum material sys...
Topological insulators are insulating in the bulk but possess spin-momentum locked metallic surface ...
International audienceAbstract Spin-orbit effects appearing in topological insulators (TI) and at Ra...
is a layered van der Waals semimetal with several inverted band gaps throughout the entire Brillouin...
Topological insulators are insulating materials that display massless, Dirac-like surface states in ...
International audienceQuantum materials harbor a cornucopia of exotic transport phenomena challengin...