Szczegóły publikacji

Opis bibliograficzny

Magnetism of PrFeAsO parent compound for iron-based superconductors: Mössbauer spectroscopy study / K. Komędera, A. Pierzga, A. Błachowski, K. Ruebenbauer, A. Budziak, S. Katrych, J. Karpiński // Journal of Alloys and Compounds ; ISSN  0925-8388 . — 2017 — vol. 717, s. 350–355. — Bibliogr. s. 355, Abstr. — Publikacja dostępna online od: 2017-05-08. — A. Budziak – afiliacja: Institute of Nuclear Physics, Polish Academy of Science

Autorzy (7)

  • Komędera Kamila
  • Pierzga A.
  • Błachowski Artur
  • Ruebenbauer Krzysztof
  • Budziak Andrzej
  • Katrych Sergiy O.
  • Karpiński Janusz

Słowa kluczowe

Pr magnetic orderMossbauer spectroscopyiron based superconductorsspin density wave

Dane bibliometryczne

ID BaDAP131791
Data dodania do BaDAP2021-01-05
Tekst źródłowyURL
DOI10.1016/j.jallcom.2017.05.049
Rok publikacji2017
Typ publikacjiartykuł w czasopiśmie
Otwarty dostęptak
Czasopismo/seriaJournal of Alloys and Compounds

Abstract

Mossbauer spectroscopy measurements were performed for the temperature range between 4.2 K and 300 K in a transmission geometry applying 14.41-keV resonant line in Fe-57 for PrFeAsO the latter being a parent compound of the iron-based superconductors belonging to the '1111' family. It was found that an itinerant 3d magnetic order develops at about 165 K and it is accompanied by an orthorhombic distortion of the chemical unit cell. A complete longitudinal 3d incommensurate spin density wave (SDW) order develops at about 140 K. Transferred hyperfine magnetic field generated by the praseodymium magnetic order on iron nuclei is seen at 12.8 K and below, i.e., below magnetic order of praseodymium magnetic moments. It is oriented perpendicular to the field of SDW on iron nuclei. The shape of SDW is almost rectangular at low temperatures and it transforms into roughly triangular form around "nematic" transition at about 140 K. Praseodymium magnetic order leads to the substantial enhancement of SDW due to the large orbital contribution to the magnetic moment of praseodymium. A transferred field indicates presence of strong magnetic susceptibility anisotropy in the [b-c] plane while following rotation of praseodymium magnetic moments in this plane with lowering temperature. It was found that "nematic" phase region is a region of incoherent spin density wavelets typical for a critical region.

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