Uncovering the hidden quantum critical point in disordered massless Dirac and Weyl semi-metals
arXiv:1606.08860 · doi:10.1103/PhysRevB.94.121107
Abstract
We study the properties of the avoided or hidden quantum critical point (AQCP) in three dimensional Dirac and Weyl semi-metals in the presence of short range potential disorder. By computing the averaged density of states (along with its second and fourth derivative at zero energy) with the kernel polynomial method (KPM) we systematically tune the effective length scale that eventually rounds out the transition and leads to an AQCP. We show how to determine the strength of the avoidance, establishing that it is not controlled by the long wavelength component of the disorder. Instead, the amount of avoidance can be adjusted via the tails of the probability distribution of the local random potentials. A binary distribution with no tails produces much less avoidance than a Gaussian distribution. We introduce a double Gaussian distribution to interpolate between these two limits. As a result we are able to make the length scale of the avoidance sufficiently large so that we can accurately study the properties of the underlying transition (that is eventually rounded out), unambiguously identify its location, and provide accurate estimates of the critical exponents and . We also show that the KPM expansion order introduces an effective length scale that can also round out the transition in the scaling regime near the AQCP.
5 pages 4 figures, Supplemental Material 2 pages 4 figures, replaced with published version
References in corpus (9)
- Fermi-liquid instabilities at magnetic quantum phase transitions
- Weyl semimetal phase in non-centrosymmetric transition metal monophosphides
- The Kernel Polynomial Method
- Bose-Einstein Condensation in Magnetic Insulators
- Rare region effects dominate weakly disordered 3D Dirac points
- Diffusive Quantum Criticality in Three Dimensional Disordered Dirac Semimetals
- Unconventional localisation transition in high dimensions
- Effective field theory of the disordered Weyl semimetal
- Dirty Bosons: Twenty Years Later
Cited by in corpus (38)
- Global Phase Diagram of a Dirty Weyl Liquid and Emergent Superuniversality
- Weyl semimetal to metal phase transitions driven by quasiperiodic potentials
- Single particle excitations in disordered Weyl fluids
- Do the surface Fermi arcs in Weyl semimetals survive disorder?
- Rare regions and avoided quantum criticality in disordered Weyl semimetals and superconductors
- Vanishing density of states in weakly disordered Weyl semimetals
- Magic-Angle Semimetals with Chiral Symmetry
- Nodal points of Weyl semimetals survive the presence of moderate disorder
- From weak to strong disorder in Weyl semimetals: Self-consistent Born approximation
- Quantitative analytical theory for disordered nodal points [Article and Erratum]
- Fermi arc reconstruction at the interface of twisted Weyl semimetals
- Electronic properties of disordered Weyl semimetals at charge neutrality
- The theory of avoided criticality in quantum motion in a random potential in high dimensions
- Avoided quantum criticality in exact numerical simulations of a single disordered Weyl cone
- Quantum phases of disordered three-dimensional Majorana-Weyl fermions
- Disordered fermionic quantum critical points
- Breakdown of universality in three-dimensional Dirac semimetals with random impurities
- Condition for the emergence of a bulk Fermi arc in disordered Dirac-fermion systems
- Quantum phase transition and unusual critical behavior in multi-Weyl semimetals
- Stability of Weyl semimetals with quasiperiodic disorder
- Multifractality at the Weyl semimetal-diffusive metal transition for generic disorder
- Short note on the density of states in 3D Weyl semimetals
- Time-reversal-broken Weyl semimetal in the Hofstadter regime
- Topological Anomalous Skin Effect in Weyl Superconductors
- Fermi arcs and surface criticality in dirty Dirac materials
- Superfluid-Insulator Transition unambiguously detected by entanglement in one-dimensional disordered superfluids
- Competition between disorder and interaction effects in 3D Weyl semimetals
- High-Dimensional Disorder-Driven Phenomena in Weyl Semimetals, Semiconductors and Related Systems
- Diluted magnetic Dirac-Weyl materials: Susceptibility and ferromagnetism in three-dimensional chiral gapless semimetals
- Disorder effects on triple-point fermions
- Ballistic transport in disordered Dirac and Weyl semimetals
- Surface quantum critical phenomena in disordered Dirac semimetals
- Chiral anomaly without Landau levels: From the quantum to the classical regime
- The low energy excitation spectrum of magic-angle semimetals
- Fate of superconductivity in disordered Dirac and semi-Dirac semimetals
- Direct topological insulator transitions in three dimensions are destabilized by non-perturbative effects of disorder
- Connecting the avoided quantum critical point to the magic-angle transition in three-dimensional Weyl semimetals
- Disordered non-Fermi liquid fixed point for two-dimensional metals at Ising-nematic quantum critical points