We study the possibility of realizing quantum anomalous Hall (QAH) effect with tunable Chern number through doping magnetic elements in a multilayer topological insulator film. We find that high Chern number QAH phases exist in ideal neutral samples and can make transition to another QAH phase directly by means of tuning exchange field strength or sample thickness. With the help of an extended Haldane model, we demonstrate the physical mechanism of the tunable Chern number QAH phase. We show that the high Chern number QAH phases are robust against weak magnetic and nonmagnetic disorders.Physics, Condensed MatterSCI(E)0ARTICLE4null8
Abstract In multilayered magnetic topological insulator structures, magnetization reversal processes...
Topological insulator (TI) is a new class of quantum material with inverted band structure caused by...
124 pagesThe integer quantum Hall effect (IQH) demonstrates the robust quantization of longitudinal ...
Studies on two-dimensional electron systems in a strong magnetic field first revealed the quantum H...
Studies of two-dimensional electron systems in a strong magnetic field revealed the quantum Hall eff...
The discovery of the quantum Hall (QH) effect led to the realization of a topological electronic sta...
Quantum anomalous Hall effect (QAHE) is the zero-field version of the quantum Hall effect which show...
The plateau-to-plateau transition in quantum Hall effect under high magnetic fields is a celebrated ...
Quantum anomalous Hall effect (QAHE) is the zero-field version of the quantum Hall effect which show...
The quantum anomalous Hall effect (QAHE), the last member of Hall family, was predicted to exhibit q...
After decades of searching for the dissipationless transport in the absence of any external magnetic...
A quantum anomalous Hall state with a high Chern number has so far been realized in multilayer struc...
Although the quantum anomalous Hall (QAH) effect has been experimentally observed in several magneti...
Today, searching for materials hosting quantum anomalous Hall effect (QAHE) at high temperature and ...
Today, searching for materials hosting quantum anomalous Hall effect (QAHE) at high temperature and ...
Abstract In multilayered magnetic topological insulator structures, magnetization reversal processes...
Topological insulator (TI) is a new class of quantum material with inverted band structure caused by...
124 pagesThe integer quantum Hall effect (IQH) demonstrates the robust quantization of longitudinal ...
Studies on two-dimensional electron systems in a strong magnetic field first revealed the quantum H...
Studies of two-dimensional electron systems in a strong magnetic field revealed the quantum Hall eff...
The discovery of the quantum Hall (QH) effect led to the realization of a topological electronic sta...
Quantum anomalous Hall effect (QAHE) is the zero-field version of the quantum Hall effect which show...
The plateau-to-plateau transition in quantum Hall effect under high magnetic fields is a celebrated ...
Quantum anomalous Hall effect (QAHE) is the zero-field version of the quantum Hall effect which show...
The quantum anomalous Hall effect (QAHE), the last member of Hall family, was predicted to exhibit q...
After decades of searching for the dissipationless transport in the absence of any external magnetic...
A quantum anomalous Hall state with a high Chern number has so far been realized in multilayer struc...
Although the quantum anomalous Hall (QAH) effect has been experimentally observed in several magneti...
Today, searching for materials hosting quantum anomalous Hall effect (QAHE) at high temperature and ...
Today, searching for materials hosting quantum anomalous Hall effect (QAHE) at high temperature and ...
Abstract In multilayered magnetic topological insulator structures, magnetization reversal processes...
Topological insulator (TI) is a new class of quantum material with inverted band structure caused by...
124 pagesThe integer quantum Hall effect (IQH) demonstrates the robust quantization of longitudinal ...