We propose a nonlocal manipulation method to build topological devices through emerging robust helical surface states in Z(2) = 0 topological systems. Specifically, in a ribbon of Z(2) = 0 Bernevig-Hughes- Zhang (BHZ) model with finite-size effect, if magnetic impurities are doped on the top (bottom) edge, the edge states on the bottom (top) edge can be altered according to the strengths and directions of these magnetic impurities. Consequently, the backscattering between the emerging robust helical edge states and gapped normal edge states due to finite-size confinement is also changed, which makes the system alternate between a good one-channel conductor and a good insulator. This effect allows for fabricating topological devices with a h...
The work in this thesis is dedicated to creating and manipulating topological states of matter in co...
The discoveries of the two-dimensional quantum Hall effect, the quantum spin Hall effect, and three-...
Helical locking of spin and momentum and prohibited backscattering are the key properties of topolog...
We study the possibility of realizing robust helical surface states in Z(2) = 0 systems. We find tha...
We study the possibility of realizing robust helical surface states in Z(2) = 0 systems. We find tha...
A three-dimensional (3D) nodal-loop semimetal phase is exploited to engineer a number of intriguing ...
Topological circuits, an exciting field just emerged over the last two years, have become a very acc...
The two-dimensional topological insulating phase has been experimentally discovered in HgTe quantum ...
The explosion of recent work suggests that the next generation of solid state devices will be built ...
A workable model for describing dislocation lines introduced into a three-dimensional topological in...
In minimally twisted bilayer graphene, a moire pattern consisting of AB and BA stacking regions sepa...
In this thesis, three works on topological insulators (TIs) and topological superconductors (TSCs) w...
The next generation of electronic devices based on 3D topological insulators will be developed from ...
Topological insulators and topological superconductors are novel states of matter.One of the most ch...
Recent discoveries have spurred the theoretical prediction and experimental realization of novel mat...
The work in this thesis is dedicated to creating and manipulating topological states of matter in co...
The discoveries of the two-dimensional quantum Hall effect, the quantum spin Hall effect, and three-...
Helical locking of spin and momentum and prohibited backscattering are the key properties of topolog...
We study the possibility of realizing robust helical surface states in Z(2) = 0 systems. We find tha...
We study the possibility of realizing robust helical surface states in Z(2) = 0 systems. We find tha...
A three-dimensional (3D) nodal-loop semimetal phase is exploited to engineer a number of intriguing ...
Topological circuits, an exciting field just emerged over the last two years, have become a very acc...
The two-dimensional topological insulating phase has been experimentally discovered in HgTe quantum ...
The explosion of recent work suggests that the next generation of solid state devices will be built ...
A workable model for describing dislocation lines introduced into a three-dimensional topological in...
In minimally twisted bilayer graphene, a moire pattern consisting of AB and BA stacking regions sepa...
In this thesis, three works on topological insulators (TIs) and topological superconductors (TSCs) w...
The next generation of electronic devices based on 3D topological insulators will be developed from ...
Topological insulators and topological superconductors are novel states of matter.One of the most ch...
Recent discoveries have spurred the theoretical prediction and experimental realization of novel mat...
The work in this thesis is dedicated to creating and manipulating topological states of matter in co...
The discoveries of the two-dimensional quantum Hall effect, the quantum spin Hall effect, and three-...
Helical locking of spin and momentum and prohibited backscattering are the key properties of topolog...