We perform an exact renormalization group analysis of a fermionic system on a three-dimensional lattice, showing the persistence of the Weyl semimetallic phase up the quantum critical point discriminating between the semimetallic and insulating phases. The interaction produces finite modifications of the anisotropic Fermi velocity and of the overlap of the true (dressed) quasiparticle with the free electron wave function. The optical conductivity is the one of Weyl fermions with anisotropic Fermi velocities replacing the light velocity, provided that the frequencies are below a certain energy scale, which is vanishing at the quantum critical point; above such scale, a different behavior is found, dominated by the quadratic corrections to th...
The discovery of Weyl semimetals represents a significant advance in topological band theory. They p...
Weyl semimetals are three-dimensional analogs of graphene with pointlike Fermi surfaces. Their linea...
APS March Meeting 2017, New Orleans, Louisiana, March 13–17, 2017. -- http://meetings.aps.org/Meetin...
By using Wilsonian renormalization group methods we rigorously establish the existence of a Weyl sem...
Weyl semimetals are 3D condensed matter systems characterized by a degenerate Fermi surface, consist...
Weyl semimetals are 3D condensed matter systems characterized by a degenerate Fermi surface, consist...
We study the electromagnetic properties of Weyl semimetals with strong interactions. Focusing on a s...
We study the electromagnetic properties of Weyl semimetals with strong interactions. Focusing on a s...
Weyl semimetals are 3D condensed matter systems characterized by a degenerate Fermi surface, consist...
Optical conductivity (OC) can serve as a measure of correlation effects in a wide range of condensed...
5 pags., 4 figs.We investigate the low-energy scaling behavior of an interacting three-dimensional (...
The discovery of graphene opened the way to an intriguing field in condensed matter: that of Dirac m...
Dirac and Weyl semimetals are states of matter exhibiting the relativistic physics of, respectively,...
The Weyl semimetal (WSM) is a newly proposed quantum state of matter. It has Weyl nodes in bulk exci...
In this article we study the effects of disorder and long-range Coulomb interactions on triple-Weyl ...
The discovery of Weyl semimetals represents a significant advance in topological band theory. They p...
Weyl semimetals are three-dimensional analogs of graphene with pointlike Fermi surfaces. Their linea...
APS March Meeting 2017, New Orleans, Louisiana, March 13–17, 2017. -- http://meetings.aps.org/Meetin...
By using Wilsonian renormalization group methods we rigorously establish the existence of a Weyl sem...
Weyl semimetals are 3D condensed matter systems characterized by a degenerate Fermi surface, consist...
Weyl semimetals are 3D condensed matter systems characterized by a degenerate Fermi surface, consist...
We study the electromagnetic properties of Weyl semimetals with strong interactions. Focusing on a s...
We study the electromagnetic properties of Weyl semimetals with strong interactions. Focusing on a s...
Weyl semimetals are 3D condensed matter systems characterized by a degenerate Fermi surface, consist...
Optical conductivity (OC) can serve as a measure of correlation effects in a wide range of condensed...
5 pags., 4 figs.We investigate the low-energy scaling behavior of an interacting three-dimensional (...
The discovery of graphene opened the way to an intriguing field in condensed matter: that of Dirac m...
Dirac and Weyl semimetals are states of matter exhibiting the relativistic physics of, respectively,...
The Weyl semimetal (WSM) is a newly proposed quantum state of matter. It has Weyl nodes in bulk exci...
In this article we study the effects of disorder and long-range Coulomb interactions on triple-Weyl ...
The discovery of Weyl semimetals represents a significant advance in topological band theory. They p...
Weyl semimetals are three-dimensional analogs of graphene with pointlike Fermi surfaces. Their linea...
APS March Meeting 2017, New Orleans, Louisiana, March 13–17, 2017. -- http://meetings.aps.org/Meetin...