In this work, we present a model of the surface states of nonsymmorphic semimetals. These are derived from surface mass terms that lift the high degeneracy imposed on the band structure by the nonsymmorphic bulk symmetries. Reflecting the reduced symmetry at the surface, the bulk bands are strongly modified. This leads to the creation of two-dimensional floating or unpinned bands, which are distinct from Shockley states, quantum well states, or topologically protected surface states. We focus on the layered semimetal ZrSiS to clarify the origin of its surface states. We demonstrate an excellent agreement between density functional theory calculations and angle-resolved photoemission spectroscopy measurements and present an effective four-ba...
A flat band structure in momentum space is considered key for the realization of novel phenomena. A ...
Topological Dirac semimetals (TDSs) represent a new state of quantum matter recently discovered that...
For an idealized one-dimensional crystal it is possible to have energy levels whose wave functions a...
In this work, we present a model of the surface states of nonsymmorphic semimetals. These are derive...
In a topological semimetal with Dirac or Weyl points, the bulk-boundary correspondence principle pre...
Band inversions are key to stabilising a variety of novel electronic states in solids, from topologi...
The experimental discovery of the topological Dirac semimetal establishes a platform to search for v...
We study the electronic structure of the nodal line semimetal ZrSiTe both experimentally and theoret...
The nature of surface states in cleaved surfaces of II-VI compounds with zincblende structure is stu...
The band inversions that generate the topologically non-trivial band gaps of topological insulators ...
In order to clarify the controversial issue of the topological nature in a mixed-valent Kondo system...
Unveiling new topological phases of matter is one of the current objectives in condensed matter phys...
In a previous work we have discussed the valence band electronic structure of a (001) oriented surf...
In non-magnetic materials the combination of inversion symmetry breaking (ISB) and spin-orbit coupli...
A flat band structure in momentum space is considered key for the realization of novel phenomena. A ...
Topological Dirac semimetals (TDSs) represent a new state of quantum matter recently discovered that...
For an idealized one-dimensional crystal it is possible to have energy levels whose wave functions a...
In this work, we present a model of the surface states of nonsymmorphic semimetals. These are derive...
In a topological semimetal with Dirac or Weyl points, the bulk-boundary correspondence principle pre...
Band inversions are key to stabilising a variety of novel electronic states in solids, from topologi...
The experimental discovery of the topological Dirac semimetal establishes a platform to search for v...
We study the electronic structure of the nodal line semimetal ZrSiTe both experimentally and theoret...
The nature of surface states in cleaved surfaces of II-VI compounds with zincblende structure is stu...
The band inversions that generate the topologically non-trivial band gaps of topological insulators ...
In order to clarify the controversial issue of the topological nature in a mixed-valent Kondo system...
Unveiling new topological phases of matter is one of the current objectives in condensed matter phys...
In a previous work we have discussed the valence band electronic structure of a (001) oriented surf...
In non-magnetic materials the combination of inversion symmetry breaking (ISB) and spin-orbit coupli...
A flat band structure in momentum space is considered key for the realization of novel phenomena. A ...
Topological Dirac semimetals (TDSs) represent a new state of quantum matter recently discovered that...
For an idealized one-dimensional crystal it is possible to have energy levels whose wave functions a...