Kondo Effect - 40 Years after the Discovery
      Published on 15th January 2005 
      Reprints from Special Topics section, J. Phys. Soc. Jpn., Vol.74, No.1 (2005)
      A4-size; approx. 250pages

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Jun Kondo's paper "Resistance Minimum in Dilute Magnetic Alloys" was published in Progress of Theoretical Physics 32 (1964) 37. Although forty years have passed since then, the importance of this work has not diminished, but continues to increase. Kondo solved the long-standing mystery of resistance minimum phenomenon in his study, thereby opening a door to fundamental and universal physics; this is now known as the Kondo effect. 

To celebrate the 40th anniversary of his everlasting contribution, the Journal of the Physical Society of Japan has decided to publish contributions from researchers who have been actively studying the Kondo effect and related problems.
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CONTENTS:
  1. J. Kondo@"Sticking to My Bush"
  2. P. Nozieres "Kondo Lattices and the Mott Metal-Insulator Transition"
  3. A. C. Hewson "The Strong Coupling Fixed-Point Revisited"
  4. J. Kroha and P. Woelfle "Conserving Diagrammatic Approximations for   Quantum Impurity Models: NCA and CTMA"
  5. Y. Shimizu and O. Sakai "Kondo Effect in Systems with Two-Electron Occupancy"
  6. J. W. Allen "The Kondo Resonance in Electron Spectroscopy"
  7. S. Yotsuhashi, M. Kojima, H. Kusunose and K. Miyake "New Aspects of Quasi-Kondo Physics: Two-Level Kondo and Strongly Coupled Local Electron-Phonon Systems"
  8. I. Affleck "Non-Fermi Liquid Behavior in Kondo Models"
  9. S. Fujimoto and N. Kawakami "Kondo Problem and Related One-Dimensional Quantum Systems: Bethe Ansatz Solution and Boundary Conformal Field Theory"
  10. A. Furusaki "Kondo Problems in Tomonaga-Luttinger Liquids"
  11. O. Ujsaghy and A. Zawadowski " Kondo Effect on Mesoscopic Scale "
  12. S. Sasaki and S. Tarucha "The Kondo Effect Enhanced by State Degeneracy"
  13. M. Eto "Enhancement of Kondo Effect in Mutilevel Quantum Dots"
  14. W. Izumida and O. Sakai "Kondo Effect in Quantum Dot Systems -- Numerical Renomalization Group Study --"
  15. A. Oguri "Fermi Liquid Theory for the Nonequilibrium Kondo Effect at Low Bias Voltages"
  16. A. Rosch, J. Paaske, J. Kroha and P. Wolfle "The Kondo Effect in Non-Equilibrium Quantum Dots: Perturbative Renormalization Group"
  17. T. Fujii and K. Ueda "Out-of-Equilibrium Transport Phenomena through a Quantum Dot in a Magnetic Field"
  18. D. Vollhardt, K. Held, G. Keller, R. Bulla, Th. Pruschke, I. A. Nekrasov, and V. I. Anisimov "Dynamical Mean-Field Theory and Its Applications to Real Materials"
  19. G. Kotliar "Quantum Impurity Models as Reference Systems for Strongly Correlated Materials: the Road from the Kondo Impurity Model to First Principles Calculations Using Dynamical Mean Field Theory"
  20. H. Kontani and K. Yamada "From Kondo Effect to Fermi Liquid"
  21. F. Steglich "Superconductivity and Magnetism in Heavy-Fermion Compounds"
  22. J. Flouquet, A. Barla, R. Bourier, J. Derr and G. Knebel "Kondo Engineering: from Single Kondo Impurity to the Kondo Lattice"
  23. Y. Kitaoka, S. Kawasaki, T. Mito and Y. Kawasaki "Unconventional Superconductivity in Heavy Fermion Systems"
  24. J. Otsuki, H. Kusunose and Y. Kuramoto "Theory of Crystalline Electric Field and Kondo Effect in Pr Skutterudites"
  25. Y. Aoki, H. Sugawara, H. Harima and H. Sato "Novel Kondo behaviors Realized in the Filled Skutterudite Structure"
  26. M. B. Maple "Strongly Correlated Electron Phenomena in f-Electron Materials"
Published by the Physical Society of Japan through the Instiute of Pure and Applied Physics


Last updated Jan-17-2005
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