Javascript must be enabled to continue!
Manipulating Topological Phases in Magnetic Topological Insulators
View through CrossRef
Magnetic topological insulators (MTIs) are a group of materials that feature topological band structures with concurrent magnetism, which can offer new opportunities for technological advancements in various applications, such as spintronics and quantum computing. The combination of topology and magnetism introduces a rich spectrum of topological phases in MTIs, which can be controllably manipulated by tuning material parameters such as doping profiles, interfacial proximity effect, or external conditions such as pressure and electric field. In this paper, we first review the mainstream MTI material platforms where the quantum anomalous Hall effect can be achieved, along with other exotic topological phases in MTIs. We then focus on highlighting recent developments in modulating topological properties in MTI with finite-size limit, pressure, electric field, and magnetic proximity effect. The manipulation of topological phases in MTIs provides an exciting avenue for advancing both fundamental research and practical applications. As this field continues to develop, further investigations into the interplay between topology and magnetism in MTIs will undoubtedly pave the way for innovative breakthroughs in the fundamental understanding of topological physics as well as practical applications.
Title: Manipulating Topological Phases in Magnetic Topological Insulators
Description:
Magnetic topological insulators (MTIs) are a group of materials that feature topological band structures with concurrent magnetism, which can offer new opportunities for technological advancements in various applications, such as spintronics and quantum computing.
The combination of topology and magnetism introduces a rich spectrum of topological phases in MTIs, which can be controllably manipulated by tuning material parameters such as doping profiles, interfacial proximity effect, or external conditions such as pressure and electric field.
In this paper, we first review the mainstream MTI material platforms where the quantum anomalous Hall effect can be achieved, along with other exotic topological phases in MTIs.
We then focus on highlighting recent developments in modulating topological properties in MTI with finite-size limit, pressure, electric field, and magnetic proximity effect.
The manipulation of topological phases in MTIs provides an exciting avenue for advancing both fundamental research and practical applications.
As this field continues to develop, further investigations into the interplay between topology and magnetism in MTIs will undoubtedly pave the way for innovative breakthroughs in the fundamental understanding of topological physics as well as practical applications.
Related Results
Comparison of natural contamination accumulation characteristics between composite rod insulators and standard suspended insulator strings
Comparison of natural contamination accumulation characteristics between composite rod insulators and standard suspended insulator strings
In order to attain the pollution characteristics difference between composite rod insulators and standard disc‐type suspended insulator which is critical to the insulation selectio...
Direct Selection of Functional Insulators in Arabidopsis thaliana
Direct Selection of Functional Insulators in Arabidopsis thaliana
Abstract
Background: Insulators are DNA sequences found in all eucaryotes. By forming DNA-protein complexes in vivo they regulate enhancer-promoter interactions and define ...
Simulation Analysis of Voltage Distribution of 500kV Degraded Magnetic Insulator String
Simulation Analysis of Voltage Distribution of 500kV Degraded Magnetic Insulator String
Abstract
Insulators are important power grid equipment and key components to ensure electrical insulation performance. Porcelain insulators with reduced insulation p...
Sustainable strategy: the case of NGK Insulators
Sustainable strategy: the case of NGK Insulators
A heightened awareness of environmental sustainability has emerged in recent years, influencing consumer and investor behavior. The concept of sustainability has become a prominent...
Magnetic cloak made of NdFeB permanent magnetic material
Magnetic cloak made of NdFeB permanent magnetic material
In the past few years, the concept of an electromagnetic invisibility cloak has received much attention. Based on the pioneering theoretical work, invisibility cloaks have been gre...
Orbital Edelstein effect in topological insulators
Orbital Edelstein effect in topological insulators
Abstract
We theoretically propose a gigantic orbital Edelstein effect in topological insulators and interpret the results in terms of topological surface currents. We numer...
Analysis of magnetohydrodynamic drag character for hypersonic vehicles
Analysis of magnetohydrodynamic drag character for hypersonic vehicles
In hypersonic flight, a very high temperature area can form ahead of the nose of aerocraft due to the shock aerodynamic heating, which leads to air weakly ionized. Many researchers...
Floquet topological physics in photonics
Floquet topological physics in photonics
Floquet topological physics, an area exploring periodically driven systems and leveraging degrees of freedoms in the temporal dimension, has opened new avenues in photonics by enab...

