Several IV–VI semiconductor compounds made of heavy atoms, such as Pb1−xSnxTe, may undergo band-inversion at the L point of the Brillouin zone upon variation of their chemical composition. This inversion gives rise to topologically distinct phases, characterized by a change in a topological invariant. In the framework of the k·p theory, band-inversion can be viewed as a change of sign of the fundamental gap. A two-band model within the envelope-function approximation predicts the appearance of midgap interface states with Dirac cone dispersions in band-inverted junctions, namely, when the gap changes sign along the growth direction. We present a thorough study of these interface electron states in the presence of crossed electric and magnet...
Experiments using ARPES, which is based on the photoelectric effect, show that the surface states in...
The band inversions that generate the topologically non-trivial band gaps of topological insulators ...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. Spin–orbit coupling (SOC)...
Several IV-VI semiconductor compounds made of heavy atoms, such as Pb1-xSnxTc, may undergo band-inve...
In IV–VI semiconductor heterojunctions with band-inversion, such as those made of ${\rm Pb}_{1-x}$ $...
We revisit the problem of surface states in semiconductors with inverted-band structures, such as α-...
Recent discoveries have spurred the theoretical prediction and experimental realization of novel mat...
We describe the fine structure of Dirac states in HgTe/CdHgTe quantum wells of critical and close-to...
We theoretically study electronic states in graded-gap junctions of IV-VI compounds with band invers...
We demonstrate that a p-n junction created electrically in HgTe quantum wells with inverted band str...
The electronic structure at the interface between a topological band insulator and a Mott insulator ...
We investigate in detail the effect of electron and light- and heavy-hole state mixing on the transm...
Topological insulators and topological superconductors are novel states of matter.One of the most ch...
Gapped 2D Dirac materials, in which inversion symmetry is broken by a gap-opening perturbation, feat...
InAs/GaSb heterojunctions offer the unique situation in a semiconductor of overlapping conduction an...
Experiments using ARPES, which is based on the photoelectric effect, show that the surface states in...
The band inversions that generate the topologically non-trivial band gaps of topological insulators ...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. Spin–orbit coupling (SOC)...
Several IV-VI semiconductor compounds made of heavy atoms, such as Pb1-xSnxTc, may undergo band-inve...
In IV–VI semiconductor heterojunctions with band-inversion, such as those made of ${\rm Pb}_{1-x}$ $...
We revisit the problem of surface states in semiconductors with inverted-band structures, such as α-...
Recent discoveries have spurred the theoretical prediction and experimental realization of novel mat...
We describe the fine structure of Dirac states in HgTe/CdHgTe quantum wells of critical and close-to...
We theoretically study electronic states in graded-gap junctions of IV-VI compounds with band invers...
We demonstrate that a p-n junction created electrically in HgTe quantum wells with inverted band str...
The electronic structure at the interface between a topological band insulator and a Mott insulator ...
We investigate in detail the effect of electron and light- and heavy-hole state mixing on the transm...
Topological insulators and topological superconductors are novel states of matter.One of the most ch...
Gapped 2D Dirac materials, in which inversion symmetry is broken by a gap-opening perturbation, feat...
InAs/GaSb heterojunctions offer the unique situation in a semiconductor of overlapping conduction an...
Experiments using ARPES, which is based on the photoelectric effect, show that the surface states in...
The band inversions that generate the topologically non-trivial band gaps of topological insulators ...
© 2019, The Author(s), under exclusive licence to Springer Nature Limited. Spin–orbit coupling (SOC)...