We argue that strain applied to a time-reversal and inversion breaking Weyl semimetal in a magnetic field can induce an electric current via the chiral magnetic effect. A tight-binding model is used to show that strain generically changes the locations in the Brillouin zone but also the energies of the band touching points (tips of the Weyl cones). Since axial charge in a Weyl semimetal can relax via intervalley scattering processes, the induced current will decay with a time scale given by the lifetime of a chiral quasiparticle. We estimate the strength and lifetime of the current for typical material parameters and find that it should be experimentally observable
We suggest the possibility of a linear magnetochiral effect in time reversal breaking Weyl semimetal...
Weyl semimetals (WSMs) are topological quantum states wherein the electronic bands disperse linearly...
Weyl semimetal is a kind of three-dimensional material which has several band touch points in the en...
Dirac and Weyl semimetals form an ideal platform for testing ideas developed in high-energy physics ...
We describe a new type of the chiral magnetic effect (CME) that should occur in Weyl semimetals (WSM...
Recently, the existence of massless chiral (Weyl) fermions has been postulated in a class of semi-me...
Weyl semimetals are three-dimensional crystalline systems where pairs of bands touch at points in mo...
We investigate the viscoelastic response of the electronic degrees of freedom in three-dimensional W...
In Weyl semimetals, the chiral charge is not conserved in the presence of external nonorthogonal mag...
Oral presentation given at the Conference on Transport at the Nanoscale, held in Cuernavaca (Mexico)...
Considering the Landau quantization and chiral anomaly, we develop a semiclassical theory of the pos...
Weyl fermions can be created in materials with both time reversal and inversion symmetry by applying...
6 pages, 3 figuresWe show that a strained wire of a Weyl semimetal supports a new type of gapless ex...
Dirac materials have formed a thriving and prosperous direction in modern condensed matter physics. ...
Weyl semimetals possess massless chiral quasiparticles, and they are thus affected by the triangle a...
We suggest the possibility of a linear magnetochiral effect in time reversal breaking Weyl semimetal...
Weyl semimetals (WSMs) are topological quantum states wherein the electronic bands disperse linearly...
Weyl semimetal is a kind of three-dimensional material which has several band touch points in the en...
Dirac and Weyl semimetals form an ideal platform for testing ideas developed in high-energy physics ...
We describe a new type of the chiral magnetic effect (CME) that should occur in Weyl semimetals (WSM...
Recently, the existence of massless chiral (Weyl) fermions has been postulated in a class of semi-me...
Weyl semimetals are three-dimensional crystalline systems where pairs of bands touch at points in mo...
We investigate the viscoelastic response of the electronic degrees of freedom in three-dimensional W...
In Weyl semimetals, the chiral charge is not conserved in the presence of external nonorthogonal mag...
Oral presentation given at the Conference on Transport at the Nanoscale, held in Cuernavaca (Mexico)...
Considering the Landau quantization and chiral anomaly, we develop a semiclassical theory of the pos...
Weyl fermions can be created in materials with both time reversal and inversion symmetry by applying...
6 pages, 3 figuresWe show that a strained wire of a Weyl semimetal supports a new type of gapless ex...
Dirac materials have formed a thriving and prosperous direction in modern condensed matter physics. ...
Weyl semimetals possess massless chiral quasiparticles, and they are thus affected by the triangle a...
We suggest the possibility of a linear magnetochiral effect in time reversal breaking Weyl semimetal...
Weyl semimetals (WSMs) are topological quantum states wherein the electronic bands disperse linearly...
Weyl semimetal is a kind of three-dimensional material which has several band touch points in the en...