The Berry phase is an important concept in solids, correlated to the band topology, axion electrodynamics, and potential applications of topological materials. Here, we investigate the magnetotransport and Berry phase of rare earth element Gd-doped Bi2Se3 (Gd:Bi2Se3) topological insulators (TIs) at low temperatures and high magnetic fields. Gd:Bi2Se3 single crystals show Shubnikov-de Haas (SdH) oscillations with nontrivial Berry phase, while Bi2Se3 single crystals show zero Berry phase in SdH oscillations. A fitting of the temperature-dependent magnetization curves using the Curie-Weiss law reveals that the Gd dopants in the crystals show paramagnetism in the 3-300 K region, indicating that the origin of the Berry phase is not long-range ma...
In 3D topological insulators achieving a genuine bulk-insulating state is an important research topi...
In 3D topological insulators achieving a genuine bulk-insulating state is an important research topi...
Analysis of the topological insulator Bi2Se3 magnetically doped with various concentrations of Mn is...
We study magnetotransport in a rare-earth-doped topological insulator, Sm0.1Sb1.9Te3 single crystals...
Topological insulators are emerging materials with insulating bulk and symmetry protected nontrivial...
A simple surface band structure and a large bulk band gap have allowed Bi2Se3 to become a reference ...
Bi2Se3 is a known topological insulator. When doped with certain metals, this compound becomes super...
Topological insulators (TIs) are emergent materials with unique band structure, which allow the stud...
The present work describes the magnetotransport studies of topological-surface state (SS) in metalli...
Topological antiferromagnetic spintronics is an emerging field due to advantages such as no stray fi...
Antiferromagnetic topological insulators have attracted great attention in the condensed matter phys...
Photoemission experiments have shown that Bi2Se3 is a topological insulator. By controlled doping, w...
The temperature dependence of the resistivity (rho) of Ag-doped Bi2Se3 (AgxBi2-xSe3) shows insulatin...
The Bi2Se3 and Mn doped Bi2Se3 (i.e. Bi1.5Mn0.5Se3, referred as BiMnSe) single crystals were grown u...
We report a high-field magnetotransport study on selected low-carrier crystals of the topological in...
In 3D topological insulators achieving a genuine bulk-insulating state is an important research topi...
In 3D topological insulators achieving a genuine bulk-insulating state is an important research topi...
Analysis of the topological insulator Bi2Se3 magnetically doped with various concentrations of Mn is...
We study magnetotransport in a rare-earth-doped topological insulator, Sm0.1Sb1.9Te3 single crystals...
Topological insulators are emerging materials with insulating bulk and symmetry protected nontrivial...
A simple surface band structure and a large bulk band gap have allowed Bi2Se3 to become a reference ...
Bi2Se3 is a known topological insulator. When doped with certain metals, this compound becomes super...
Topological insulators (TIs) are emergent materials with unique band structure, which allow the stud...
The present work describes the magnetotransport studies of topological-surface state (SS) in metalli...
Topological antiferromagnetic spintronics is an emerging field due to advantages such as no stray fi...
Antiferromagnetic topological insulators have attracted great attention in the condensed matter phys...
Photoemission experiments have shown that Bi2Se3 is a topological insulator. By controlled doping, w...
The temperature dependence of the resistivity (rho) of Ag-doped Bi2Se3 (AgxBi2-xSe3) shows insulatin...
The Bi2Se3 and Mn doped Bi2Se3 (i.e. Bi1.5Mn0.5Se3, referred as BiMnSe) single crystals were grown u...
We report a high-field magnetotransport study on selected low-carrier crystals of the topological in...
In 3D topological insulators achieving a genuine bulk-insulating state is an important research topi...
In 3D topological insulators achieving a genuine bulk-insulating state is an important research topi...
Analysis of the topological insulator Bi2Se3 magnetically doped with various concentrations of Mn is...