We theoretically study three-dimensional topological semimetals (TSMs) with nodal lines protected by crystalline symmetries. Compared to TSMs with point nodes, e.g., Weyl semimetals and Dirac semimetals, where the conduction and the valence bands touch at discrete points, in these TSMs the two bands cross at closed lines in the Brillouin zone. We propose two different classes of symmetry protected nodal lines in the absence and in the presence of spin-orbital coupling (SOC), respectively. In the former, we discuss nodal lines that are protected by a combination of inversion symmetry and time-reversal symmetry, yet, unlike previously studied nodal lines in the same symmetry class, each nodal line has a Z[subscript 2] monopole charge and can ...
In topological semimetals, the valance band and conduction band meet at zero-dimensional nodal point...
In topological semimetals the Dirac points can form zero-dimensional and one-dimensional manifolds, ...
Nodal lines inside the momentum space of three-dimensional crystalline solids are topologically stab...
The subject matter of this thesis is the appearance of various nodal semimetals in crystalline solid...
We study the band topology and the associated linking structure of topological semimetals with nodal...
The realization of Dirac and Weyl physics in solids has made topological materials one of the main f...
Topological semimetals have energy bands near the Fermi energy sticking together at isolated points/...
Nodal-line semimetals are characterized by symmetry-protected band crossing lines and are expected t...
[[abstract]]Topological semimetals can support one-dimensional Fermi lines or zero-dimensional Weyl ...
We investigate two-dimensional trilayered quantum systems with multi-orbital conduction bands, by fo...
Topological semimetals can support one-dimensional Fermi lines or zero-dimensional Weyl points in mo...
Topological semimetals are a fascinating class of quantum materials that possess extraordinary elect...
The topological nodal-line semimetal state, serving as a fertile ground for various topological quan...
The band topology in condensed matter has attracted widespread attention in recent years. Due to the...
Topological metals and semimetals have become a new focus in research after the development of TIs o...
In topological semimetals, the valance band and conduction band meet at zero-dimensional nodal point...
In topological semimetals the Dirac points can form zero-dimensional and one-dimensional manifolds, ...
Nodal lines inside the momentum space of three-dimensional crystalline solids are topologically stab...
The subject matter of this thesis is the appearance of various nodal semimetals in crystalline solid...
We study the band topology and the associated linking structure of topological semimetals with nodal...
The realization of Dirac and Weyl physics in solids has made topological materials one of the main f...
Topological semimetals have energy bands near the Fermi energy sticking together at isolated points/...
Nodal-line semimetals are characterized by symmetry-protected band crossing lines and are expected t...
[[abstract]]Topological semimetals can support one-dimensional Fermi lines or zero-dimensional Weyl ...
We investigate two-dimensional trilayered quantum systems with multi-orbital conduction bands, by fo...
Topological semimetals can support one-dimensional Fermi lines or zero-dimensional Weyl points in mo...
Topological semimetals are a fascinating class of quantum materials that possess extraordinary elect...
The topological nodal-line semimetal state, serving as a fertile ground for various topological quan...
The band topology in condensed matter has attracted widespread attention in recent years. Due to the...
Topological metals and semimetals have become a new focus in research after the development of TIs o...
In topological semimetals, the valance band and conduction band meet at zero-dimensional nodal point...
In topological semimetals the Dirac points can form zero-dimensional and one-dimensional manifolds, ...
Nodal lines inside the momentum space of three-dimensional crystalline solids are topologically stab...