A member of the nonmagnetic Weyl semimetal family, niobium phosphide (NbP), is a new low-energy dissipative material due to the properties of its nontrivial energy band structure and topologically protected nodes. This paper mainly focus on the changes of the topological properties of the crystal NbP after H and He ions irradiation, a novel research view. In order to demonstrate the formation process of doping defects, we use TDDFT to simulate the whole path of H ion passing the bulk NbP, while both the total energy change for system and the radial drag force as a function of the projectile position are investigated. The energy band structures and density of states for the equilibrium point defect have been analyzed by means of the DFT meth...
By first principles calculations which include van der Waals interactions, we studied the electronic...
To date, a handful of topological semimetals (TMs) with multiple types of topological nodal line (TN...
Phosphorene, a single sheet of black phosphorus, is an elemental two-dimensional material with uniqu...
Weyl semimetals are often considered the 3D-analogon of graphene or topological insulators. The eval...
We report on the pressure evolution of the Fermi surface topology of the Weyl semimetal NbP, probed ...
We investigate electronic and optical properties of the topological Weyl semimetals TaAs, TaP, NbAs ...
Weyl semimetal (WSM) is a newly discovered quantum phase of matter that exhibits topologically prote...
We report high-pressure Raman, synchrotron x-ray diffraction, and electrical transport studies on We...
Topological Weyl semimetals (TWSs) represent a novel state of topological quantum matter which not o...
The point defect properties of body-centered cubic medium-entropy alloy NbZrTi were studied by first...
Studies of the Fermi surface modification after in-situ covering NbP semimetal with heavy elements P...
[[abstract]]Three types of fermions play a fundamental role in our understanding of nature: Dirac, M...
Weyl semimetals, a class of 3D topological materials, exhibit a unique electronic structure featurin...
The Weyl semimetal NbP exhibits a very small Fermi surface consisting of two electron and two hole p...
By first principles calculations which include van der Waals interactions, we studied the electronic...
To date, a handful of topological semimetals (TMs) with multiple types of topological nodal line (TN...
Phosphorene, a single sheet of black phosphorus, is an elemental two-dimensional material with uniqu...
Weyl semimetals are often considered the 3D-analogon of graphene or topological insulators. The eval...
We report on the pressure evolution of the Fermi surface topology of the Weyl semimetal NbP, probed ...
We investigate electronic and optical properties of the topological Weyl semimetals TaAs, TaP, NbAs ...
Weyl semimetal (WSM) is a newly discovered quantum phase of matter that exhibits topologically prote...
We report high-pressure Raman, synchrotron x-ray diffraction, and electrical transport studies on We...
Topological Weyl semimetals (TWSs) represent a novel state of topological quantum matter which not o...
The point defect properties of body-centered cubic medium-entropy alloy NbZrTi were studied by first...
Studies of the Fermi surface modification after in-situ covering NbP semimetal with heavy elements P...
[[abstract]]Three types of fermions play a fundamental role in our understanding of nature: Dirac, M...
Weyl semimetals, a class of 3D topological materials, exhibit a unique electronic structure featurin...
The Weyl semimetal NbP exhibits a very small Fermi surface consisting of two electron and two hole p...
By first principles calculations which include van der Waals interactions, we studied the electronic...
To date, a handful of topological semimetals (TMs) with multiple types of topological nodal line (TN...
Phosphorene, a single sheet of black phosphorus, is an elemental two-dimensional material with uniqu...