International audienceCondensed matter systems realizing Weyl fermions exhibit striking phenomenology derived from their topologically protected surface states as well as chiral anomalies induced by electromagnetic fields. More recently, inhomogeneous strain or magnetization were predicted to result in chiral electric E5 and magnetic B5 fields, which modify and enrich the chiral anomaly with additional terms. In this work we develop a lattice-based approach to describe the chiral anomaly, which involves Landau and pseudo-Landau levels and treats all anomalous terms on equal footing, while naturally incorporating Fermi arcs. We exemplify its potential by physically interpreting the largely overlooked role of Fermi arcs in the covariant (Ferm...
Discovery of Weyl semimetals was named ‘breakthrough of the year’ by Physics World magazine in 2015....
Weyl fermions can be created in materials with both time reversal and inversion symmetry by applying...
The Hofstadter butterfly of lattice electrons in a strong magnetic field is a cornerstone of condens...
International audienceCondensed matter systems realizing Weyl fermions exhibit striking phenomenolog...
Condensed matter systems realizing Weyl fermions exhibit striking phenomenology derived from their t...
Topological Dirac and Weyl semimetals have an energy spectrum that hosts Weyl nodes appearing in pai...
Topological Dirac and Weyl semimetals have an energy spectrum that hosts Weyl nodes appearing in pai...
Topological Dirac and Weyl semimetals have an energy spectrum that hosts Weyl nodes appearing in pai...
Topological Dirac and Weyl semimetals have an energy spectrum that hosts Weyl nodes appearing in pai...
In the Weyl semimetals, a recently discovered class of bulk materials, inverted band gap closes in t...
Weyl semimetal is a topologically non-trivial phase of matter with pairs of Weyl nodes in the k-spac...
In disordered Weyl semimetals, mechanisms of topological origin lead to the protection against Ander...
Landau's Fermi-liquid theory is the standard model for metals, characterized by the existence o...
Weyl semimetals are three-dimensional crystalline systems where pairs of bands touch at points in mo...
The Hofstadter butterfly of lattice electrons in a strong magnetic field is a cornerstone of condens...
Discovery of Weyl semimetals was named ‘breakthrough of the year’ by Physics World magazine in 2015....
Weyl fermions can be created in materials with both time reversal and inversion symmetry by applying...
The Hofstadter butterfly of lattice electrons in a strong magnetic field is a cornerstone of condens...
International audienceCondensed matter systems realizing Weyl fermions exhibit striking phenomenolog...
Condensed matter systems realizing Weyl fermions exhibit striking phenomenology derived from their t...
Topological Dirac and Weyl semimetals have an energy spectrum that hosts Weyl nodes appearing in pai...
Topological Dirac and Weyl semimetals have an energy spectrum that hosts Weyl nodes appearing in pai...
Topological Dirac and Weyl semimetals have an energy spectrum that hosts Weyl nodes appearing in pai...
Topological Dirac and Weyl semimetals have an energy spectrum that hosts Weyl nodes appearing in pai...
In the Weyl semimetals, a recently discovered class of bulk materials, inverted band gap closes in t...
Weyl semimetal is a topologically non-trivial phase of matter with pairs of Weyl nodes in the k-spac...
In disordered Weyl semimetals, mechanisms of topological origin lead to the protection against Ander...
Landau's Fermi-liquid theory is the standard model for metals, characterized by the existence o...
Weyl semimetals are three-dimensional crystalline systems where pairs of bands touch at points in mo...
The Hofstadter butterfly of lattice electrons in a strong magnetic field is a cornerstone of condens...
Discovery of Weyl semimetals was named ‘breakthrough of the year’ by Physics World magazine in 2015....
Weyl fermions can be created in materials with both time reversal and inversion symmetry by applying...
The Hofstadter butterfly of lattice electrons in a strong magnetic field is a cornerstone of condens...