When coupled with ferromagnetic layers (FM), topological insulators (TI) are expected to boost the charge-to-spin conversion efficiency across the FM/TI interface. In this context, a thorough control and optimization of the FM/TI interface quality are requested. Here, the evolution of the chemical, structural, and magnetic properties of the Fe/Sb(2)Te(3)heterostructure is presented as a function of a rapid mild thermal annealing conducted on the Sb2Te3-TI (up to 200 degrees C). While the bilayer is not subjected to any thermal treatment upon Fe deposition, the annealing of Sb(2)Te(3)markedly improves its crystalline quality, leading to an increase in the fraction of ferromagnetic Fe atoms at the buried Fe/Sb(2)Te(3)interface and a slight lo...
To study the in situ doping effect upon monotonically increasing dopant concentration, a Bi2Te3 laye...
Topological insulators (TIs) provide intriguing prospects for the future of spintronics due to their...
This thesis details work with two topological materials, Sb2Te3 and RhPb2, with the overall aim of i...
When coupled with ferromagnetic layers (FM), topological insulators (TI) are expected to boost the c...
Interfacing topological insulators (TI) with ferromagnetic (FM) layers is a promising route towards ...
Three-dimensional topological insulators (TIs) are a class of materials for which the bulk is insula...
Topological insulator (TI) based heterostructure is a prospective candidate for ultrahigh spin-to-ch...
Large-area antimony telluride (Sb2Te3) thin films are grown by a metal organic chemical vapor deposi...
The realization of superconductivity at the interface between a topological insulator and an iron-ch...
Topological Insulators (TIs) have become one of the wonder materials of condensed matter physics ove...
Topological insulators (TIs) are a promising class of materials for manipulating the magnetization o...
Topological insulators (TI) are a class of materials gaining in importance due to their unique spin/...
The influence of magnetic dopants on the electronic and chemical environments in topological insulat...
The hunt for an ideal topological insulator, where the Dirac point is situated in a desirable energe...
The promise of dissipationless transport, protected by time reversal symmetry, made the class of top...
To study the in situ doping effect upon monotonically increasing dopant concentration, a Bi2Te3 laye...
Topological insulators (TIs) provide intriguing prospects for the future of spintronics due to their...
This thesis details work with two topological materials, Sb2Te3 and RhPb2, with the overall aim of i...
When coupled with ferromagnetic layers (FM), topological insulators (TI) are expected to boost the c...
Interfacing topological insulators (TI) with ferromagnetic (FM) layers is a promising route towards ...
Three-dimensional topological insulators (TIs) are a class of materials for which the bulk is insula...
Topological insulator (TI) based heterostructure is a prospective candidate for ultrahigh spin-to-ch...
Large-area antimony telluride (Sb2Te3) thin films are grown by a metal organic chemical vapor deposi...
The realization of superconductivity at the interface between a topological insulator and an iron-ch...
Topological Insulators (TIs) have become one of the wonder materials of condensed matter physics ove...
Topological insulators (TIs) are a promising class of materials for manipulating the magnetization o...
Topological insulators (TI) are a class of materials gaining in importance due to their unique spin/...
The influence of magnetic dopants on the electronic and chemical environments in topological insulat...
The hunt for an ideal topological insulator, where the Dirac point is situated in a desirable energe...
The promise of dissipationless transport, protected by time reversal symmetry, made the class of top...
To study the in situ doping effect upon monotonically increasing dopant concentration, a Bi2Te3 laye...
Topological insulators (TIs) provide intriguing prospects for the future of spintronics due to their...
This thesis details work with two topological materials, Sb2Te3 and RhPb2, with the overall aim of i...