Imaging the impact on cuprate superconductivity of varying the inter-atomic distances within individual crystal unit-cells
arXiv:0809.0583 · doi:10.1073/pnas.0706795105
Abstract
Many theoretical models of high temperature superconductivity focus only on the doping dependence of the CuO2 plane electronic structure. But such models are manifestly insufficient to explain the strong variations in superconducting critical temperature Tc among cuprates which have identical hole-density but are crystallographically different outside the CuO2 plane. A key challenge, therefore, has been to identify a predominant out-of-plane influence controlling the superconductivity - with much attention focusing on the distance between the apical oxygen and the planar copper atom. Here we report direct determination of how variations of inter-atomic distances within individual crystalline unit cells, affect the superconducting energy-gap maximum of Bi2Sr2CaCu2O8. In this material, quasi-periodic variations of unit cell geometry occur in the form of a bulk crystalline 'supermodulation'. Within each supermodulation period, we find a co-sinusoidal variation in local that is anti-correlated with the associated variations. Furthermore, we show that phenomenological consistency would exist between these effects and the random variations found near dopant atoms if the primary effect of the interstitial dopant atom is to displace the apical oxygen so as to diminish or tilt the CuO5 pyramid. Thus we reveal a strong non-random out-of-plane effect on cuprate superconductivity at atomic scale.
24 pages, 4 figures
References in corpus (5)
- Fourier transform spectroscopy of d-wave quasiparticles in the presence of atomic scale pairing disorder
- Charge modulation, spin response, and dual Hofstadter butterfly in high-Tc cuprates
- Correlating off-stoichiometric doping with nanoscale electronic disorder and quasiparticle interference pattern in high- superconductor BiSrCaCuO
- Local Strong Coupling Pairing in -Wave Superconductor with Inhomogeneous Bosonic Modes
- Superconducting gap variations induced by structural supermodulation in BSCCO
Cited by in corpus (41)
- Striped superconductors: How the cuprates intertwine spin, charge and superconducting orders
- Nonlinear light-matter interaction at terahertz frequencies
- A quantum phase transition from triangular to stripe charge order in NbSe
- High-temperature topological superconductivity in twisted double layer copper oxides
- Optimum inhomogeneity of local lattice distortions in La2CuO4+y
- Detection of a Pair Density Wave State in UTe
- Testing the itinerancy of spin dynamics in superconducting Bi2212
- Imaging nanoscale Fermi surface variations in an inhomogeneous superconductor
- Direct Role of Structural Dynamics in Electron-Lattice Coupling of Superconducting Cuprates
- On the Electron Pairing Mechanism of Copper-Oxide High Temperature Superconductivity
- Proposed parametric cooling of bilayer cuprate superconductors by terahertz excitation
- First direct observation of the Van Hove singularity in the tunneling spectra of cuprates
- Enhancement of the superconducting critical temperature in BiSrCaCuO by controlling disorder outside CuO planes
- Possible strain induced Mott gap collapse in 1T-TaS
- Structure of BSCCO supermodulation from ab initio calculations
- Nanoscale interplay of strain and doping in a high-temperature superconductor
- Band Structure of Overdoped Cuprate Superconductors: Density Functional Theory Matching Experiments
- Universal Disorder in Bi2Sr2CaCu2O8+x
- Fidelity and superconductivity in two-dimensional t-J models
- Prominent Josephson tunneling between twisted single copper oxide planes of BiSrLaxCuO
- Local modulations of the spin-fluctuation mediated pairing interaction by impurities in d-wave superconductors
- Superconductivity studied by solving ab initio low-energy effective Hamiltonians for carrier doped CaCuO, BiSrCuO, BiSrCaCuO, and HgBaCuO
- Growth and post-annealing studies of La-Bi2201 single crystals
- Real-space pairing through a confined local nematic state in cuprate superconductors
- Atomic manipulation of the gap in BiSrCaCuO
- Effective pairing theory for strongly correlated d-wave superconductors
- Strong enhancement of d-wave superconducting state in the three-band Hubbard model coupled to an apical oxygen phonon
- Cuprate Twistronics for Quantum Hardware
- Signatures of orbital loop currents in the spatially resolved local density of states
- Extinction of impurity resonances in large-gap regions of inhomogeneous d-wave superconductors
- Experimental evidence of chemical-pressure-controlled superconductivity in cuprates
- Orbital textures and evolution of correlated insulating state in monolayer 1T phase transition metal dichalcogenides
- First principle prediction of structural distortions in the cuprates and their impact on the electronic structure
- Doping Dependence of Spin-Momentum Locking in Bismuth-Based High-Temperature Cuprate Superconductors
- Tuning Bound States of Symmetry-Breaking Vortices via Unidirectional Charge Density Wave in a Transition-Metal Dichalcogenide Superconductor
- Modulations of the local pairing interaction near magnetic impurities in d-wave superconductors
- Heteroanionic Stabilization of Ni with Nonplanar Coordination in Layered Nickelates
- Low-Energy Electron Microscopy contrast of stacking boundaries: comparing twisted few-layer graphene and strained epitaxial graphene on silicon carbide
- Gap fluctuations, Cooper pairs with finite center-of-mass momentum, and suppression of superconductivity in inhomogeneous systems with dopant superpuddles agglomerates
- Searching for Superconductivity in High Entropy Oxide Ruddlesden-Popper Cuprate Films
- Møller scattering in of generalized quantum electrodynamics in the heisenberg picture