Detection of electronic nematicity using scanning tunneling microscopy
arXiv:1304.4541 · doi:10.1103/PhysRevB.87.161117
Abstract
Electronic nematic phases have been proposed to occur in various correlated electron systems and were recently claimed to have been detected in scanning tunneling microscopy (STM) conductance maps of the pseudogap states of the cuprate high-temperature superconductor Bi2Sr2CaCu2O8+x (Bi-2212). We investigate the influence of anisotropic STM tip structures on such measurements and establish, with a model calculation, the presence of a tunneling interference effect within an STM junction that induces energy-dependent symmetry-breaking features in the conductance maps. We experimentally confirm this phenomenon on different correlated electron systems, including measurements in the pseudogap state of Bi-2212, showing that the apparent nematic behavior of the imaged crystal lattice is likely not due to nematic order but is related to how a realistic STM tip probes the band structure of a material. We further establish that this interference effect can be used as a sensitive probe of changes in the momentum structure of the sample's quasiparticles as a function of energy.
Accepted for publication (PRB - Rapid Communications). Main text (5 pages, 4 figures) + Supplemental Material (4 pages, 4 figures)
References in corpus (8)
- Evidence for an electron nematic phase transition in underdoped iron pnictide superconductors
- Divergent nematic susceptibility in an iron arsenide superconductor
- Imaging the Fano Lattice to 'Hidden Order' Transition in URu2Si2
- Rotational Symmetry Breaking in the Hidden-Order Phase of URu2Si2
- Visualizing heavy fermions emerging in a quantum critical Kondo lattice
- Visualizing the emergence of the pseudogap state and the evolution to superconductivity in a lightly hole-doped Mott insulator
- Suppression of Superconductivity by Twin Boundaries in FeSe
- Picometer Registration of Zinc Impurity States in Bi2Sr2CaCu2O8+d for Phase Determination in Intra-unit-cell Fourier Transform STM
Cited by in corpus (19)
- Theory of Intertwined Orders in High Temperature Superconductors
- Charge-Order and Broken Rotational Symmetry in Magic Angle Twisted Bilayer Graphene
- Simultaneous Transitions in Cuprate Momentum-Space Topology and Electronic Symmetry Breaking
- Quenched disorder and vestigial nematicity in the pseudo-gap regime of the cuprates
- Heavy-electron quantum criticality and single-particle spectroscopy
- Imaging superconducting vortex core and lattice with the scanning tunneling microscope
- Cuprate superconductors as viewed through a striped lens
- Chen's derivative rule revisited: Role of tip-orbital interference in STM
- Strongly correlated doped hole carriers in the superconducting nickelates: Their location, local many-body state, and low-energy effective Hamiltonian
- Experimental Evidence that Zn Impurities Pin Pair-Density-Wave Order in LaBaCuO
- Exploring Quasiparticles in High-Tc Cuprates Through Photoemission, Tunneling, and X-ray Scattering Experiments
- A theory of coupled dual dynamics of macroscopic phase coherence and microscopic electronic fluids: effect of dephasing on cuprate superconductivity
- Sub-nanometer optical linewidth of thulium atoms in rare gas crystals
- Detecting Nematic Order in STM/STS Data with Artificial Intelligence
- Tracking the nematicity in cuprate superconductors: a resistivity study under uniaxial pressure
- Evidence of electron-electron interactions around Van Hove singularities of a graphene Moiré superlattice
- Structural Phase Separation and Enhanced Superconductivity in La1.875Ba0.125CuO4 under Uniaxial Strain
- Atomic-scale imaging of electronic nematicity in ferropnictides
- Doping-induced nematic and stripe orders within the charge density wave state of TiSe