Metallic state in cubic FeGe beyond its quantum phase transition

We report on results of electrical resistivity and structural investigations on the cubic modification of FeGe under high pressure. The long-wavelength helical order (T(C) = 280 K) is suppressed at a critical pressure p(c) approximately 19 GPa. An anomaly at T(X)(p) and strong deviations from a Ferm...

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Veröffentlicht in:Physical review letters 2007-01, Vol.98 (4), p.047204-047204, Article 047204
Hauptverfasser: Pedrazzini, P, Wilhelm, H, Jaccard, D, Jarlborg, T, Schmidt, M, Hanfland, M, Akselrud, L, Yuan, H Q, Schwarz, U, Grin, Yu, Steglich, F
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Sprache:eng
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Zusammenfassung:We report on results of electrical resistivity and structural investigations on the cubic modification of FeGe under high pressure. The long-wavelength helical order (T(C) = 280 K) is suppressed at a critical pressure p(c) approximately 19 GPa. An anomaly at T(X)(p) and strong deviations from a Fermi-liquid behavior in a wide pressure range above p(c) suggest that the suppression of T(C) disagrees with the standard notion of a quantum critical phase transition. The metallic ground state persisting at high pressure can be described by band-structure calculations if zero-point motion is included. The shortest FeGe interatomic distance display discontinuous changes in the pressure dependence close to the T(C)(p) phase line.
ISSN:0031-9007
1079-7114
DOI:10.1103/physrevlett.98.047204