Skip to main content »

Trinity College Dublin


Claude Ederer - Publications

  1. First principles study of the influence of (110) strain on the ferroelectric trends of TiO2
    A. Grünebohn, M. Siewert, P. Entel, and C. Ederer
    arXiv:1111.2575 (2011)
  2. Maximally localized Wannier functions in LaMnO3 within PBE+U, hybrid functionals, and GW: an efficient route to construct ab-initio tight-binding parameters for eg perovskites
    C. Franchini, R. Kováčik, M. Marsman, S. Sathyanarayana Murthy, J. He, C. Ederer, and G. Kresse
    arXiv:1111.1528 (2011)
  3. Structural state of relaxor ferroelectrics PbSc0.5Ta0.5O3 and PbSc0.5Nb0.5O3 at high pressures up to 30 GPa
    B. J. Maier, N. Waeselmann, B. Mihailova, R. J. Angel, C. Ederer, C. Paulmann, M. Gospodinov, A. Friedrich, and U. Bismayer
    Phys. Rev. B 84, 174104 (2011)
  4. First principles study of the influence of (110)-oriented strain on the ferroelectric properties of rutile TiO2
    A. Grünebohm, C. Ederer, and P. Entel
    Phys. Rev. B 84, 132105 (2011)
  5. Effect of epitaxial strain on the cation distributon in spinel ferrites CoFe2O4 and NiFe2O4: a density functional theory study
    D. Fritsch and C. Ederer
    Appl. Phys. Lett. 99, 081916 (2011)
  6. Effect of Hubbard U on the construction of low energy Hamiltonians for LaMnO3 via maximally localized Wannier functions
    R. Kováčik and C. Ederer
    Phys. Rev. B 84, 075118 (2011)
  7. Strain effects in spinel ferrite thin films from first principles calculations
    D. Fritsch and C. Ederer
    J. Phys.: Conf. Ser. 292, 012014 (2011)
  8. Mechanism of ferroelectric instabilities in non d0 perovskites: LaCrO3 versus CaMnO3
    C. Ederer, T. Harris, and R. Kováčik
    Phys. Rev. B 83, 054110 (2011)
  9. Epitaxial strain effects in the spinel ferrites CoFe2O4 and NiFe2O4 from first principles
    D. Fritsch and C. Ederer
    Phys. Rev. B 82, 104117 (2010)
  10. Calculation of model Hamiltonian parameters for LaMnO3 using maximally localized Wannier functions
    R. Kováčik and C. Ederer
    Phys. Rev. B 81, 245108 (2010)
  11. Strain-induced isosymmetric phase transition in BiFeO3
    A. J. Hatt, N. A. Spaldin, and C. Ederer
    Phys. Rev. B 81, 054109 (2010)
  12. A strain-driven morphotropic phase boundary in BiFeO3
    R. J. Zeches, M. D. Rossell, J. X. Zhang, A. J. Hatt, Q. He, C.-H. Yang, A. Kumar, C. H. Wang, A. Melville, C. Adamo, G. Sheng, Y.-H. Chu, J. F. Ihlefeld, R. Erni, C. Ederer, V. Gopalan, L. Q. Chen, D. G. Schlom, N. A. Spaldin, L. W. Martin, and R. Ramesh
    Science 326, 977 (2009)
  13. Correlation effects in p-electron magnets: Electronic structure of RbO2 from first principles
    R. Kováčik and C. Ederer
    Phys. Rev. B 80, 140411 (2009)
  14. First principles studies of multiferroic materials
    S. Picozzi and C. Ederer
    J. Phys.: Condens. Matter 21, 303201 (2009)
  15. Toroidal moments as indicator for magneto-electric coupling: the case of BiFeO3 versus FeTiO3
    C. Ederer
    Eur. Phys. J. B 71, 349-354 (2009)
  16. Electric-field switchable magnetization via the Dzyaloshinskii-Moriya interaction: FeTiO3 versus BiFeO3
    C. Ederer and C. J. Fennie
    J. Phys.: Condens. Matter 20, 434219 (2008)
  17. Towards a modern theory of toroidal moments in bulk periodic solids
    C. Ederer and N. A. Spaldin
    Phys. Rev. B 76, 214404 (2007)
  18. Structural distortions and model Hamiltonian parameters: from LSDA to a tight-binding description of LaMnO3
    C. Ederer, C. Lin, and A. J. Millis
    Phys. Rev. B 76, 155105 (2007)
  19. Magnetic coupling in CoCr2O4 and MnCr2O4: an LSDA+U study
    C. Ederer and M. Komelj
    Phys. Rev. B 76, 064409 (2007)
  20. Electrical control of antiferromagnetic domains in multiferroic BiFeO3 films at room temperature
    T. Zhao, A. Scholl, F. Zavaliche, K. Lee, M. Barry, A. Doran, M. P. Cruz, Y. H. Chu, C. Ederer, N. A. Spaldin, R. R. Das, D. M. Kim, S. H. Baek, C. B. Eom, and R. Ramesh
    Nature Materials 5, 823-829 (2006)
  21. Dielectric anomalies and spiral magnetic order in CoCr2O4
    G. Lawes, B. Melot, K. Page, C. Ederer, M. A. Hayward, Th. Proffen, and R. Seshadri
    Phys. Rev. B 74, 024413 (2006)
  22. Origin of ferroelectricity in the multiferroic barium fluorides BaMF4
    C. Ederer and N. A. Spaldin
    Phys. Rev. B 74, 024102 (2006)
  23. Electric-field-switchable magnets: The case of BaNiF4
    C. Ederer and N. A. Spaldin
    Phys. Rev. B 74, 020401(R) (2006)
  24. Recent progress in first-principles studies of magnetoelectric multiferroics
    C. Ederer and N. A. Spaldin
    Current Opinion in Solid State and Materials Science 9, 128-139 (2005)
  25. Effect of epitaxial strain on the spontaneous polarization of thin film ferroelectrics
    C. Ederer and N. A. Spaldin
    Phys. Rev. Lett. 95, 257601 (2005)
  26. First principles study of the multiferroics BiFeO3 , Bi2FeCrO6 , and BiCrO3 : Structure, polarization, and magnetic ordering temperature
    P. Baettig, C. Ederer, and N. A. Spaldin
    Phys. Rev. B 72, 214105 (2005)
  27. Influence of strain and oxygen vacancies on the magnetoelectric properties of multiferroic bismuth ferrite
    C. Ederer and N. A. Spaldin
    Phys. Rev. B 71, 224103 (2005)
  28. Weak ferromagnetism and magnetoelectric coupling in bismuth ferrite
    C. Ederer and N. A. Spaldin
    Phys. Rev. B 71, 060401(R) (2005)
  29. First principles study of spontaneous polarization in multiferroic BiFeO3
    J. B. Neaton, C. Ederer, U. V. Waghmare, N. A. Spaldin, and K. M. Rabe
    Phys. Rev. B 71, 014113 (2005)
  30. A new route to magnetic ferroelectrics (News & Views)
    C. Ederer and N. A. Spaldin
    Nature Materials 3, 849-851 (2004)
  31. An experimental and computational investigation of structure and magnetism in pyrite Co1-xFexS2: Chemical bonding and half-metallicity
    K. Ramesha, R. Seshadri, C. Ederer, T. He, and M. A. Subramanian
    Phys. Rev. B 70, 214409 (2004)
  32. Anisotropy of orbital moments and magnetic dipole term Tz in CrO2: An ab initio study
    M. Komelj, C. Ederer, and M. Fähnle
    Phys. Rev. B 69, 132409 (2004)
  33. Magnetism in systems with various dimensionalities: A comparison between Fe and Co
    C. Ederer, M. Komelj, and M. Fähnle
    Phys. Rev. B 68, 052402 (2003)
  34. The Electron Theory of Magnetism in Monatomic Nanowires
    M. Komelj, C. Ederer, and M. Fähnle
    Advances in Solid State Physics 43, 781-788 (2003)
  35. Comment on the analysis of angular-dependent x-ray magnetic circular dichroism in systems with reduced dimensionality
    C. Ederer, M. Komelj, J. W. Davenport, and M. Fähnle
    J. Electr. Spectr. and Rel. Phenom. 130, 97-100 (2003)
  36. Ab initio electron theory for the magnetism in Fe: Pressure dependence of spin-wave energies, exchange parameters and Curie temperature
    S. Morán, C. Ederer, and M. Fähnle
    Phys. Rev. B 67, 012407 (2003)
  37. From the bulk to monatomic wires: An ab initio study of magnetism in Co systems with various dimensionality
    M. Komelj, C. Ederer, J. W. Davenport, and M. Fähnle
    Phys. Rev. B 66, 140407(R) (2002)
  38. Theory of induced magnetic moments and x-ray magnetic circular dichroism in Co-Pt multilayers
    C. Ederer, M. Komelj, M. Fähnle, and G. Schütz
    Phys. Rev. B 66, 094413 (2002)
  39. Density-functional study of Fe3Al: LSDA versus GGA
    F. Lechermann, F. Welsch, C. Elsässer, C. Ederer, M. Fähnle, J. M. Sanchez, and B. Meyer
    Phys. Rev. B 65, 132104 (2002)
  40. Fast ab initio methods for the calculation of adiabatic spin wave spectra in complex systems
    O. Grotheer, C. Ederer, and M. Fähnle
    Phys. Rev. B 63, 100401(R) (2001)
  41. Ab initio treatment of noncollinear spin systems within the atomic-sphere approximation and beyond
    O. Grotheer, C. Ederer, and M. Fähnle
    Phys. Rev. B 62, 5601 (2000)

Last updated: 2011 07 03