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The valence-fluctuating ground state of plutonium

  • Marc Janoschek
  • , Pinaki Das
  • , Bismayan Chakrabarti
  • , Douglas L. Abernathy
  • , Mark D. Lumsden
  • , John M. Lawrence
  • , Joe D. Thompson
  • , Gerard H. Lander
  • , Jeremy N. Mitchell
  • , Scott Richmond
  • , Mike Ramos
  • , Frans Trouw
  • , Jian Xin Zhu
  • , Kristjan Haule
  • , Gabriel Kotliar
  • , Eric D. Bauer

Research output: Contribution to journalArticlepeer-review

114 Scopus citations

Abstract

A central issue in material science is to obtain understanding of the electronic correlations that control complex materials. Such electronic correlations frequently arise because of the competition of localized and itinerant electronic degrees of freedom. Although the respective limits of well-localized or entirely itinerant ground states are well understood, the intermediate regime that controls the functional properties of complex materials continues to challenge theoretical understanding. We have used neutron spectroscopy to investigate plutonium, which is a prototypical material at the brink between bonding and nonbonding configurations. Our study reveals that the ground state of plutonium is governed by valence fluctuations, that is, a quantum mechanical superposition of localized and itinerant electronic configurations as recently predicted by dynamical mean field theory. Our results not only resolve the long-standing controversy between experiment and theory on plutonium's magnetismbut also suggest an improved understanding of the effects of such electronic dichotomy in complex materials.

Original languageEnglish
Article numbere1500188
JournalScience Advances
Volume1
Issue number6
DOIs
StatePublished - Jul 2015

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