Quantum phases of disordered three-dimensional Majorana-Weyl fermions
arXiv:1612.05648 · doi:10.1103/PhysRevB.95.155122
Abstract
The gapless Bogoliubov-de Gennes (BdG) quasiparticles of a clean three dimensional spinless superconductor provide an intriguing example of a thermal Hall semimetal (ThSM) phase of Majorana-Weyl fermions in class D of the Altland-Zirnbauer symmetry classification; such a phase can support a large anomalous thermal Hall conductivity and protected surface Majorana-Fermi arcs at zero energy. We study the effect of quenched disorder on such a topological phase with both numerical and analytical methods. Using the kernel polynomial method, we compute the average and typical density of states for the BdG quasiparticles; based on this, we construct the disordered phase diagram. We show for infinitesimal disorder, the ThSM is converted into a diffusive thermal Hall metal (ThDM) due to rare statistical fluctuations. Consequently, the phase diagram of the disordered model only consists of ThDM and thermal insulating phases. Nonetheless, there is a cross-over at finite energies from a ThSM regime to a ThDM regime, and we establish the scaling properties of the avoided quantum critical point which marks this cross-over. Additionally, we show the existence of two types of thermal insulators: (i) a trivial thermal band insulator (ThBI) [or BEC phase] supporting only exponentially localized Lifshitz states (at low energy), and (ii) a thermal Anderson insulator (AI) at large disorder strengths. We determine the nature of the two distinct localization transitions between these two types of insulators and ThDM.We also discuss the experimental relevance of our results for three dimensional, time reversal symmetry breaking, triplet superconducting states.
24 pages, 24 figures
References in corpus (15)
- Weyl semimetal phase in non-centrosymmetric transition metal monophosphides
- The Kernel Polynomial Method
- Topological response in Weyl semimetals and the chiral anomaly
- Consequences of a condensed matter realization of Lorentz violating QED in Weyl semi-metals
- Rare region effects dominate weakly disordered 3D Dirac points
- Random phase vector for calculating the trace of a large matrix
- Disorder effect on 3-dimensional quantum spin Hall systems
- Diffusive Quantum Criticality in Three Dimensional Disordered Dirac Semimetals
- Unconventional localisation transition in high dimensions
- Effective field theory of the disordered Weyl semimetal
- Uncovering the hidden quantum critical point in disordered massless Dirac and Weyl semi-metals
- Density of quasiparticle states for a two-dimensional disordered system: Metallic, insulating, and critical behavior in the class D thermal quantum Hall effect
- On the disorder-driven quantum transition in three-dimensional relativistic metals
- Weyl node with random vector potential
- Universal critical exponent in class D superconductors
Cited by in corpus (21)
- Linear Scaling Quantum Transport Methodologies
- Topological superconductivity of spin-3/2 carriers in a three-dimensional doped Luttinger semimetal
- Weyl semimetal to metal phase transitions driven by quasiperiodic potentials
- 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
- Fermi arc reconstruction at the interface of twisted Weyl semimetals
- Electronic properties of disordered Weyl semimetals at charge neutrality
- Avoided quantum criticality in exact numerical simulations of a single disordered Weyl cone
- Multifractality at the Weyl semimetal-diffusive metal transition for generic disorder
- Type-I and type-II topological nodal superconductors with -wave interaction
- Fermi arcs and surface criticality in dirty Dirac materials
- Topological Anomalous Skin Effect in Weyl Superconductors
- Ballistic transport in disordered Dirac and Weyl semimetals
- Chiral anomaly without Landau levels: From the quantum to the classical regime
- Surface quantum critical phenomena in disordered Dirac semimetals
- Exactly solvable chain of interacting electrons with correlated hopping and pairing
- Direct topological insulator transitions in three dimensions are destabilized by non-perturbative effects of disorder
- Localization by particle-hole symmetry breaking: a loop expansion