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Complex interplay of3dand4fmagnetism inLa1−xGdxMnO3

2003/11/30 by J. Hemberger, S. Lobina, H. -A. Krug von Nidda +6 · 2 citations
Materials Science · Physics and Astronomy · #Advanced Condensed Matter Physics #Magnetic and transport properties of perovskites and related materials #Multiferroics and related materials #cond-mat.str-el

paper · pdf · doi:10.1103/physrevb.70.024414

8 pages, 10 figures, submitted to PRB

arxiv created 2004/02/27 · openalex publication_date 2004/07/22 · arxiv updated 2009/12/01 · openalex created_date 2016/06/24 · openalex updated_date 2026/07/28

Abstract

We report on structural, magnetic, electrical, and thermodynamic properties of Gd-doped LaMnO3 single crystals for Gd doping levels 0\ensuremath\leqslantx\ensuremath\leqslant1. At room temperature, for all doping levels the orthorhombic O' phase is indicative of a strong Jahn-Teller distortion. All compositions are insulating. The magnetism of La_1\ensuremath-xGdxMnO3 is dominated by the relatively strong MnOMn superexchange. For increasing Gd doping, the weakening of the nearest-neighbor exchange interactions due to the significant decrease of the MnOMn bond angles leads to the continuous suppression of the magnetic phase-transition temperature into the A-type antiferromagnetic low-temperature phase. The temperature dependence of the magnetization can only be explained assuming canting of the manganese spins. The magnetic moments of Gd are weakly antiferromagnetically coupled within the sublattice and are antiferromagnetically coupled to the Mn moments. For intermediate concentrations compensation points are found, below which the spontaneous magnetization becomes negative. In pure GdMnO3 the Mn spins undergo a transition into a complex, probably incommensurate magnetic structure at 41.5\phantom\rule0.3em0exK, followed by a further ordering transition at 18--20\phantom\rule0.3em0exK revealing weak ferromagnetism due to canting and finally by the onset of magnetic order in the Gd sublattice at 6.5\phantom\rule0.3em0exK. At the lowest temperatures and low external fields, both magnetic sublattices reveal a canted structure with antiparallel ferromagnetic components.

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