Unconventional superconductors: experimental investigation of the order-parameter symmetry

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Sci Rep. Published online Feb PMID: Graf 1. Matthias J. Received Nov 26; Accepted Jan 7. All rights reserved.


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Abstract The spin-fluctuation mechanism of superconductivity usually results in the presence of gapless or nodal quasiparticle states in the excitation spectrum. Open in a separate window.

Project 2 - INTAS - Il'ichev, Phase-coherent transport in contacts of conventional

Figure 1. Fermi surfaces and hot-spots from first-principles electronic band structure calculations. Figure 2. Normal State Instability and Pairing Strength We now carry out calculations of the pairing symmetry and pairing strength based on the spin-fluctuation mechanism of electron pairs in the spin-singlet channel. Figure 3. Figure 4. Band-dependent SC pairing strength for several representative q z cuts.

Magnetic Resonance Mode and Signatures of Pairing Symmetry We present experimentally verifiable signatures for both dominant pairing symmetries. Figure 5. Evolution of computed magnetic excitation spectra for both pairing symmetries left and right columns and all three compounds rows. Figure 6. PCS conductances.


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  • Unconventional superconductors : experimental investigation of the order-parameter symmetry.
  • High-Tc | Max Planck Institute for Solid State Research;
  • Outlook Obtaining a consistent theory of unconventional superconductivity, which can describe cuprate, pnictide, organic, heavy-fermion, as well as actinide superconductors has a pressing need. Author Contributions T. Acknowledgments This work was supported by the U. References Scalapino D. A common thread: The pairing interaction for unconventional superconductors. A universal relationship between magnetic resonance and SC gap in unconventional superconductors.

    Curro N. Unconventional superconductivity in PuCoGa 5. Nature , Baek S. Ohishi K. B 76 , Das T. Spin fluctuations and the peak-dip-hump feature in the photoemission spectrum of actinides. Concepts relating magnetic interactions, intertwined electronic orders, and strongly correlated superconductivity.

    1. Introduction

    USA , Matter 13 , L—L Imaging the formation of high-energy dispersion anomalies in the actinide UCoGa 5. X 2 , Joyce J. Photoemission and the electronic structure of PuCoGa 5. B 87 , R Miyake K. New trend of superconductivity in strongly correlated electron systems. Matter 19 , Daghero D. Strong-coupling d -wave superconductivity in PuCoGa 5 probed by point contact spectroscopy. Orbital fluctuation mediated superconductivity in iron pnictide: Analysis of five orbital Hubbard-Holstein model.

    Matter 24 , Advances in the preparation and characterization of transuranium systems. Matter 15 , S Zhu J.

    ISBN 13: 9783540289852

    Oppeneer P. Fermiology of PuCoGa 5 and of related Pu compounds. Alloys Compounds — , — Opahle I. Electronic structure of the Pu-based superconductor PuCoGa 5 and of related actinide compounds. B 70 , Shick A. Theoretical investigation of electronic structure, electric field gradients, and photoemission of PuCoGa 5 and PuRhGa 5 superconductors.

    Acknowledgments This work was supported by the U. References Scalapino D. A common thread: The pairing interaction for unconventional superconductors. A universal relationship between magnetic resonance and SC gap in unconventional superconductors. Curro N. Unconventional superconductivity in PuCoGa 5. Nature , Baek S.

    Superconductivity

    Ohishi K. B 76 , Das T. Spin fluctuations and the peak-dip-hump feature in the photoemission spectrum of actinides. Concepts relating magnetic interactions, intertwined electronic orders, and strongly correlated superconductivity. USA , Matter 13 , L—L Imaging the formation of high-energy dispersion anomalies in the actinide UCoGa 5.

    X 2 , Joyce J. Photoemission and the electronic structure of PuCoGa 5.

    Experimental Investigation of the Order-Parameter Symmetry

    B 87 , R Miyake K. New trend of superconductivity in strongly correlated electron systems. Matter 19 , Daghero D. Strong-coupling d -wave superconductivity in PuCoGa 5 probed by point contact spectroscopy. Orbital fluctuation mediated superconductivity in iron pnictide: Analysis of five orbital Hubbard-Holstein model.

    Key publications:

    Matter 24 , Advances in the preparation and characterization of transuranium systems. Matter 15 , S Zhu J. Oppeneer P. Fermiology of PuCoGa 5 and of related Pu compounds. Alloys Compounds — , — Opahle I. Electronic structure of the Pu-based superconductor PuCoGa 5 and of related actinide compounds. B 70 , Shick A. Theoretical investigation of electronic structure, electric field gradients, and photoemission of PuCoGa 5 and PuRhGa 5 superconductors.

    B 83 , Wang J. Scalapino D. B 34 , Role of Fermi surface anisotropy in the study of gap anisotropy using magnetic-field-angle dependence of thermal oscillations in A y Fe 2 Se 2 superconductors. Strong-coupling theory of superconductivity in a degenerate Hubbard model. B 69 , Dahm T. Strength of the spin-fluctuation-mediated pairing interaction in a high-temperature superconductor. Schmalian J.

    Pairing due to spin fluctuations in layered organic superconductors.

    Unconventional Superconductors

    Graser S. Near-degeneracy of several pairing channels in multiorbital models for the Fe pnictides. New J. Bourges P. Science , — Unconventional superconductivity in Ba 0. Nature , — Spin resonance in the d -wave superconductor CeCoIn 5. Reconstructing the bulk Fermi surface and SC gap properties from neutron scattering experiments.

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