Abstract The recent advent of topological states of matter spawned many significant discoveries. The quantum anomalous Hall (QAH) effect is a prime example due to its potential for applications in quantum metrology, as well as its influence on fundamental research into the underlying topological and magnetic states and into axion electrodynamics. Here, electronic transport studies on a (V,Bi,Sb)2Te3 ferromagnetic topological insulator nanostructure in the QAH regime are presented. This allows access to the dynamics of an individual ferromagnetic domain. The domain size is estimated to be in the 50–100 nm range. Telegraph noise resulting from the magnetization fluctuations of this domain is observed in the Hall signal. Careful analysis of th...
Topological insulators with intrinsic magnetic order are emerging as an exciting platform to realize...
Today, searching for materials hosting quantum anomalous Hall effect (QAHE) at high temperature and ...
In this thesis, we study various electron systems with nontrivial topological characters emerging in...
The discovery of the quantum Hall (QH) effect led to the realization of a topological electronic sta...
124 pagesThe integer quantum Hall effect (IQH) demonstrates the robust quantization of longitudinal ...
Topological insulators are a newly discovered class of materials in which helical conducting modes e...
The quantum anomalous Hall effect (QAHE), the last member of Hall family, was predicted to exhibit q...
Despite the theoretical development and experimental discovery of a variety of topological materials...
Breaking the time-reversal symmetry of a topological insulator (TI) by ferromagnetism can induce exo...
Quantized Hall conductance is a generic feature of two-dimensional electronic systems with broken ti...
The quantum anomalous Hall effect1,2 is a fundamental transport response of a topological insulator ...
The quantum anomalous Hall effect (QAHE) has been recently demonstrated in Cr- and V-doped three-dim...
This thesis focuses on investigating magneto-transport properties of a ferromagnetic topological ins...
Topological insulator (TI) is a new class of quantum material with inverted band structure caused by...
Topological matter is a new state of matter which is characterized by topological nontrivial electro...
Topological insulators with intrinsic magnetic order are emerging as an exciting platform to realize...
Today, searching for materials hosting quantum anomalous Hall effect (QAHE) at high temperature and ...
In this thesis, we study various electron systems with nontrivial topological characters emerging in...
The discovery of the quantum Hall (QH) effect led to the realization of a topological electronic sta...
124 pagesThe integer quantum Hall effect (IQH) demonstrates the robust quantization of longitudinal ...
Topological insulators are a newly discovered class of materials in which helical conducting modes e...
The quantum anomalous Hall effect (QAHE), the last member of Hall family, was predicted to exhibit q...
Despite the theoretical development and experimental discovery of a variety of topological materials...
Breaking the time-reversal symmetry of a topological insulator (TI) by ferromagnetism can induce exo...
Quantized Hall conductance is a generic feature of two-dimensional electronic systems with broken ti...
The quantum anomalous Hall effect1,2 is a fundamental transport response of a topological insulator ...
The quantum anomalous Hall effect (QAHE) has been recently demonstrated in Cr- and V-doped three-dim...
This thesis focuses on investigating magneto-transport properties of a ferromagnetic topological ins...
Topological insulator (TI) is a new class of quantum material with inverted band structure caused by...
Topological matter is a new state of matter which is characterized by topological nontrivial electro...
Topological insulators with intrinsic magnetic order are emerging as an exciting platform to realize...
Today, searching for materials hosting quantum anomalous Hall effect (QAHE) at high temperature and ...
In this thesis, we study various electron systems with nontrivial topological characters emerging in...