Magnetic-field induced instability surrounding the A-phase of MnSi: Bulk and SANS measurements

We have determined the boundary of the magnetic A-phase of MnSi from distinct changes of slope in the AC susceptibility for magnetic field B applied parallel to the crystallographic 〈 1 0 0 〉 , 〈 1 1 0 〉 and 〈 1 1 1 〉 directions. The specific heat displays an anomaly of a few percent at the border o...

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Veröffentlicht in:Physica. B, Condensed matter Condensed matter, 2006-11, Vol.385, p.385-387
Hauptverfasser: Lamago, Daniel, Georgii, Robert, Pfleiderer, Christian, Böni, Peter
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Sprache:eng
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Zusammenfassung:We have determined the boundary of the magnetic A-phase of MnSi from distinct changes of slope in the AC susceptibility for magnetic field B applied parallel to the crystallographic 〈 1 0 0 〉 , 〈 1 1 0 〉 and 〈 1 1 1 〉 directions. The specific heat displays an anomaly of a few percent at the border of the A-phase characteristic of a well-defined phase transition. In addition to the previously reported change of orientation of the helical modulation in the A-phase, we observe a gradual appearance of a ring of neutron small-angle scattering intensity that extends over the field and temperature regime of the A-phase. The estimated integrated intensity of this ring is a sizable fraction of the intensity in the helically ordered state, thus indicating that the change of the magnetic structure near the A-phase cannot be interpreted in terms of an abrupt change of orientation of a simple helical modulation alone.
ISSN:0921-4526
1873-2135
DOI:10.1016/j.physb.2006.05.079