Magnetic Field-Induced Insulator-Semimetal Transition in a Pyrochlore Nd2Ir2O7

We investigate magnetotransport properties in a single crystal of pyrochore-type Nd2Ir2O7. The metallic conduction is observed on the antiferromagnetic domain walls of the all-in-all-out-type Ir 5d moment ordered insulating bulk state that can be finely controlled by an external magnetic field along...

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Veröffentlicht in:Physical review letters 2015-07, Vol.115 (5), p.056402-056402
Hauptverfasser: Ueda, K, Fujioka, J, Yang, B-J, Shiogai, J, Tsukazaki, A, Nakamura, S, Awaji, S, Nagaosa, N, Tokura, Y
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Sprache:eng
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Zusammenfassung:We investigate magnetotransport properties in a single crystal of pyrochore-type Nd2Ir2O7. The metallic conduction is observed on the antiferromagnetic domain walls of the all-in-all-out-type Ir 5d moment ordered insulating bulk state that can be finely controlled by an external magnetic field along [111]. On the other hand, an applied field along [001] induces the bulk phase transition from insulator to semimetal as a consequence of the field-induced modification of the Nd 4f and Ir 5d moment configurations. A theoretical calculation consistently describing the experimentally observed features suggests a variety of exotic topological states as functions of electron correlation and Ir 5d moment orders, which can be finely tuned by the choice of rare-earth ion and magnetic field, respectively.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.115.056402