We present a semiclassical explanation for the morphology of the surface Fermi arcs of Weyl semimetals. Viewing the surface states as a two-dimensional Fermi gas subject to band bending and Berry curvatures, we show that it is the non-parallelism between the velocity and the momentum that gives rise to the spiral structure of Fermi arcs. We map out the Fermi arcs from the velocity field for a single Weyl point and a lattice with two Weyl points. We also investigate the surface magnetoplasma of Dirac semimetals in a magnetic field, and find that the drift motion, the chiral magnetic effect and the Imbert-Fedorov shift are all involved in the formation of surface Fermi arcs. Our work not only provides an insightful perspective on the surface ...
The surface of a Weyl semimetal famously hosts an exotic topological metal that contains open Fermi ...
A Weyl semimetal is a new state of matter that hosts Weyl fermions as quasiparticle excitations. The...
The dispersion of charge carriers in a metal is distinctly different from that of free electrons owi...
We theoretically study the topological robustness of the surface physics induced by Weyl Fermi-arc s...
The Weyl semimetal is a new quantum state of a topological semimetal, of which topological surface s...
Recently it has been discovered that in Weyl semimetals the surface state Berry curvature can diverg...
Dirac and Weyl semimetals both exhibit arc-like surface states. However, whereas the surface Fermi a...
Weyl semimetal is a type of crystals which host emergent quasiparticles that behave like Weyl fermio...
We demonstrate a few unique dynamical properties of point-gap Weyl semimetal, an intrinsic non-Hermi...
Weyl fermions are massless chiral fermions that play an important role in quantum field theory but h...
We analyze the structure of the surface states and Fermi arcs of Weyl semimetals as a function of th...
Very recently the topological Weyl semimetal (WSM) state was predicted in the noncentrosymmetric com...
The discovery of topological states of matter has led to a revolution in materials research. When ex...
Funding Information: This study was financed by Merck Sharp & Dohme, MSD España. Publisher Copyright...
We introduce spectral flow techniques to explain why the Fermi arcs of Weyl semimetals are topologic...
The surface of a Weyl semimetal famously hosts an exotic topological metal that contains open Fermi ...
A Weyl semimetal is a new state of matter that hosts Weyl fermions as quasiparticle excitations. The...
The dispersion of charge carriers in a metal is distinctly different from that of free electrons owi...
We theoretically study the topological robustness of the surface physics induced by Weyl Fermi-arc s...
The Weyl semimetal is a new quantum state of a topological semimetal, of which topological surface s...
Recently it has been discovered that in Weyl semimetals the surface state Berry curvature can diverg...
Dirac and Weyl semimetals both exhibit arc-like surface states. However, whereas the surface Fermi a...
Weyl semimetal is a type of crystals which host emergent quasiparticles that behave like Weyl fermio...
We demonstrate a few unique dynamical properties of point-gap Weyl semimetal, an intrinsic non-Hermi...
Weyl fermions are massless chiral fermions that play an important role in quantum field theory but h...
We analyze the structure of the surface states and Fermi arcs of Weyl semimetals as a function of th...
Very recently the topological Weyl semimetal (WSM) state was predicted in the noncentrosymmetric com...
The discovery of topological states of matter has led to a revolution in materials research. When ex...
Funding Information: This study was financed by Merck Sharp & Dohme, MSD España. Publisher Copyright...
We introduce spectral flow techniques to explain why the Fermi arcs of Weyl semimetals are topologic...
The surface of a Weyl semimetal famously hosts an exotic topological metal that contains open Fermi ...
A Weyl semimetal is a new state of matter that hosts Weyl fermions as quasiparticle excitations. The...
The dispersion of charge carriers in a metal is distinctly different from that of free electrons owi...