Yahoo Suche Web Suche

Suchergebnisse

  1. Suchergebnisse:
  1. 15. Dez. 2011 · The Goodenough-Kanamori rule, first formulated by Goodenough in 1955 (Goodenough 1955; Goodenough 1958) and subsequently provided more rigorous mathematical underpinning by Kanamori (1959), applies to interatomic spin-spin interactions between two atoms, each carrying a net spin, that are mediated by virtual electron transfers ...

  2. A set of semi-empirical rules were developed by John B. Goodenough and Junjiro Kanamori in the 1950s. These rules, now referred to as the Goodenough–Kanamori rules, have proven highly successful in rationalizing

  3. 4. Dez. 2019 · The magnetic ground states in highly ordered double perovskites LaSr 1−x Ca x NiReO 6 ( x = 0.0, 0.5, 1.0) are studied in view of the Goodenough-Kanamori rules of superexchange interactions in...

    • Somnath Jana, Somnath Jana, Somnath Jana, Payel Aich, P. Anil Kumar, P. Anil Kumar, Ola Kenji Forslu...
    • 2019
  4. 25. Mai 2022 · Goodenough-Kanamori-Anderson (GKA) rules for superexchange interactions are widely applied in magnetic materials, including magnetic oxides, perovskites and recently discovered 2D vdW magnetic systems. We review GKA rules and its application in the first part of this article.

  5. Kanamori-Goodenough Regeln. Die Kanamori-Goodenough-Regeln beschreiben, ob durch die Superaustauschwechselwirkung eine ferro-oder eine antiferromagnetische Kopplung zu erwarten ist. Dies hängt ab vom Winkel zwischen den Bindungen der beiden Metall-Kationen.

  6. 4. Nov. 2022 · These rules have been shown to validate the results of Anderson's rigorous mathematical SE theory and are now popularized by the names of its principles as the GoodenoughKanamori–Anderson rules. The chapter considers fundamental origins of magnetic anisotropy in ferrites and posit ways to engineer this anisotropy from the spin ...

  7. 21. Juni 2022 · Here, we describe application of the long-standing Goodenough-Kanamori-Anderson rules for superexchange as guiding principles in the design of next generation magnetoceramics to meet the challenges of 5G wireless communication technologies and their timely implementation.