Superconductivity from piezoelectric interactions in Weyl semimetals
arXiv:1904.06433 · doi:10.1103/PhysRevB.100.035106
Abstract
We present an analytical low-energy theory of piezoelectric electron-phonon interactions in undoped Weyl semimetals, taking into account also Coulomb interactions. We show that piezoelectric interactions generate a long-range attractive potential between Weyl fermions. This potential comes with a characteristic angular anisotropy. From the one-loop renormalization group approach and a mean-field analysis, we predict that superconducting phases with either conventional s-wave singlet pairing or nodal-line triplet pairing could be realized for sufficiently strong piezoelectric coupling. For small couplings, we show that the quasi-particle decay rate exhibits a linear temperature dependence where the prefactor vanishes only in a logarithmic manner as the quasi-particle energy approaches the Weyl point. For practical estimates, we consider the Weyl semimetal TaAs.
18 pages, 7 figures. v2: typo corrected, comments about disorder and a separate section for quasi-particle lifetime added. Accepted version
References in corpus (18)
- Titanic Magnetoresistance in WTe2
- Topological Semimetals
- Discovery of Weyl fermion semimetals and topological Fermi arc states
- Weyl Semimetals, Fermi Arcs and Chiral Anomalies (A Short Review)
- Chiral anomaly and transport in Weyl metals
- Chiral anomaly, Charge Density Waves, and Axion Strings from Weyl Semimetals
- Superconductivity of doped Weyl semimetals: finite-momentum pairing and electronic analogues of the 3He-A phase
- Chiral anomaly from strain-induced gauge fields in Dirac and Weyl semimetals
- Electron scattering in tantalum monoarsenide
- Inhomogeneous Weyl and Dirac semimetals: Transport in axial magnetic fields and Fermi arc surface states from pseudo Landau levels
- Interplay of Coulomb and electron-phonon interactions in graphene
- Time-reversal invariant topological superconductivity in doped Weyl semimetals
- Strain induced Chiral Magnetic Effect in Weyl semimetals
- Quantum Criticality of Topological Phase Transitions in 3D Interacting Electronic Systems
- Electron-phonon scattering in topological insulators
- Theory of a quantum critical phenomenon in a topological insulator: (3+1)-dimensional quantum electrodynamics in solids
- Detecting Chiral Magnetic Effect by Lattice Dynamics
- Dynamical piezoelectric and magnetopiezoelectric effects in polar metals from Berry phases and orbital moments