Scanning tunneling spectroscopy of Majorana zero modes in a Kitaev spin liquid
arXiv:2209.12930 · doi:10.1103/PhysRevB.107.054432
Abstract
We describe scanning tunneling spectroscopic signatures of Majorana zero modes (MZMs) in Kitaev spin liquids. The tunnel conductance is determined by the dynamical spin correlations of the spin liquid, which we compute exactly, and by spin-anisotropic cotunneling form factors. Near a vortex, the tunnel conductance has a staircase voltage dependence, where conductance steps arise from MZMs and (at higher voltages) from additional vortex configurations. By scanning the probe tip position, one can detect the vortex locations. Our analysis suggests that topological magnon bound states near defects or magnetic impurities generate spectroscopic signatures that are qualitatively different from those of MZMs.
14 pages, 7 figures
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Cited by in corpus (11)
- Non-local spin correlation as a signature of Ising anyons trapped in vacancies of the Kitaev spin liquid
- Probing quantum spin liquids with a quantum twisting microscope
- Field-driven spatiotemporal manipulation of Majorana zero modes in a Kitaev spin liquid
- flux binding to higher-spin impurities in the Kitaev spin liquid
- Local spin-flip transitions induced by magnetic quantum impurities in two-dimensional magnets
- Theory of quasiparticle interference in Kitaev quantum spin liquids
- Electric polarization near vortices in the extended Kitaev model
- Real-time control of non-Abelian anyons in Kitaev spin liquid under energy dissipation
- Strain-induced Landau levels of Majorana fermions in an anisotropically interacting Kitaev model on a honeycomb lattice
- Robustness of Vacancy-Bound Non-Abelian Anyons in the Kitaev Model in a Magnetic Field
- Majorana Signatures in Planar Tunneling through a Kitaev Spin Liquid