Glide-resolved photoemission spectroscopy: Measuring topological invariants in nonsymmorphic space groups
arXiv:1902.10722 · doi:10.1103/PhysRevB.101.235166
Abstract
The two classes of 3D, time-reversal-invariant insulators are known to subdivide into four classes in the presence of glide symmetry. Here, we extend this classification of insulators to include glide-symmetric Weyl metals, and find a finer classification. We further elucidate the smoking-gun experimental signature of each class in the photoemission spectroscopy of surface states. Measuring the topological invariant by photoemission relies on identifying the glide representation of the initial Bloch state before photo-excitation - we show how this is accomplished with relativistic selection rules, combined with standard spectroscopic techniques to resolve both momentum and spin. Our method relies on a novel spin-momentum locking that is characteristic of all glide-symmetric solids (inclusive of insulators and metals in trivial and topological categories). As an orthogonal application, given a glide-symmetric solid with an ideally symmetric surface, we may utilize this spin-momentum locking to generate a source of FULLY spin-polarized photoelectrons, which have diverse applications in solid-state spectroscopy. Our ab-initio calculations predict BaPb, stressed NaBi, and KHgSb to realize all three, nontrivial insulating phases in the classification.
30 pages, 9 figures. Version 2 clarifies the selection rule for p-polarized light at oblique incidence angles
References in corpus (27)
- Topological Insulators with Inversion Symmetry
- Classification of topological insulators and superconductors in three spatial dimensions
- Topological quantum chemistry
- Three dimensional topological invariants for time reversal invariant Hamiltonians and the three dimensional quantum spin Hall effect
- Time Reversal Polarization and a Z_2 Adiabatic Spin Pump
- Topological classification of crystalline insulators through band structure combinatorics
- Computing topological invariants without inversion symmetry
- Topology of crystalline insulators and superconductors
- Wannier representation of Z_2 topological insulators
- Classification of reflection symmetry protected topological semimetals and nodal superconductors
- On the classification of Quantum Spin Hall Models
- Double crystallographic groups and their representations on the Bilbao Crystallographic Server
- New classes of topological crystalline insulators with unpinned surface Dirac cones
- Fermi liquid instabilities in the spin channel
- Z2-topology in nonsymmorphic crystalline insulators: Mobius twist in surface states
- Wallpaper Fermions and the Nonsymmorphic Dirac Insulator
- Topological Crystalline Materials - General Formulation, Module Structure, and Wallpaper Groups -
- Dynamic generation of spin orbit coupling
- Spin Polarization of Photoelectrons from Topological Insulators
- Topological Bloch oscillations
- Hourglass Fermion Surface States in Stacked Topological Insulators with Nonsymmorphic Symmetry
- No-go theorem for topological insulators and sure-fire recipe for Chern insulators
- Organizing symmetry-protected topological phases by layering and symmetry reduction: a minimalist perspective
- Effect of Electron-Electron Interactions on Rashba-like and Spin-Split Systems
- BaHgSn: A Dirac semimetal with surface hourglass fermions
- Momentum-dependent spin selection rule in photoemission with glide symmetry
- Robustness of topological states to lattice instability in non-symmorphic topological insulator KHgSb