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  1. Frederick Duncan Michael Haldane (* 14. September 1951 in London) ist ein britischer Physiker, der in theoretischer Festkörperphysik arbeitet. 2016 erhielt er (zusammen mit David J. Thouless und J. Michael Kosterlitz) für Forschungen zur Theorie verschiedener topologischer Phasen der Materie den Nobelpreis für Physik. [1] Inhaltsverzeichnis.

  2. Frederick Duncan Michael Haldane FRS FInstP (born 14 September 1951), known as F. Duncan Haldane, is a British-born physicist who is currently the Sherman Fairchild University Professor of Physics at Princeton University. He is a co-recipient of the 2016 Nobel Prize in Physics, along with David J. Thouless and J. Michael Kosterlitz.

  3. Duncan Haldane. Office Phone. Email. Assistant. Office. 330 Jadwin Hall. Website. http://wwwphy.princeton.edu/~haldane/index.html. Eugene Higgins Professor of Physics. In general, I am interested in strongly-interacting quantum many-body condensed-matter systems, explored by non-perturbative methods:

  4. The Nobel Prize in Physics 2016 was awarded with one half to David J. Thouless, and the other half to F. Duncan M. Haldane and J. Michael Kosterlitz "for theoretical discoveries of topological phase transitions and topological phases of matter"

  5. F. Duncan M. Haldane The Nobel Prize in Physics 2016 . Born: 14 September 1951, London, United Kingdom . Affiliation at the time of the award: Princeton University, Princeton, NJ, USA . Prize motivation: “for theoretical discoveries of topological phase transitions and topological phases of matter” Prize share: 1/4

  6. About. In general, I am interested in strongly-interacting quantum many-body condensed-matter systems, explored by non-perturbative methods: Geometry of the fractional quantum Hall effect (FQHE): The FQHE occurs when the kinetic energy of electrons bound to a 2D surface becomes quantized in the presence of a high magnetic fields when they move ...

  7. by F. Duncan M. Haldane Department of Physics, Princeton University ABSTRACT Nobel Lecture, presented December 8, 2016, Aula Magna, Stockholm University. I will describe the history and background of three discoveries cited in this Nobel Prize: ˜e “TKNN” topological formula for the integer quantum Hall e“ect