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Magnetic ordering and exchange effects in the antiferromagnetic solid solutions Mn x Ni 1 − x O

作者:Anthony Kevin Cheetham, David A. O. Hope · 发表于:Physical review. B, Condensed matter · 年份:1983 · DOI:10.1103/physrevb.27.6964 · 被引用次数:266 · 研究领域:Multiferroics and related materials、Magnetic and transport properties of perovskites and related materials、Advanced Condensed Matter Physics

The antiferromagnetic phases of MnO, NiO, and the solid solutions ${\mathrm{Mn}}_{x}{\mathrm{Ni}}_{1\ensuremath{-}x}\mathrm{O}$ ($x=0.24, 0.48, 0.77$) have been examined by high-resolution powder neutron diffraction. The solid solutions have random cation distributions, and N\'eel temperature and mean cation-moment measurements indicate that the spins of ${\mathrm{Mn}}^{2+}$ and ${\mathrm{Ni}}^{2+}$ are effectively collinear owing to the strength of the 180\ifmmode^\circ\else\textdegree\fi{} cation-anion-cation superexchange. As in MnO and NiO, the magnetic moments are confined to (111) planes by dipole-dipole forces, and the very small trigonal exchange strictions are interpreted in terms of a competition between antiferromagnetic ${\mathrm{Mn}}^{2+}$-${\mathrm{Mn}}^{2+}$ and ferromagnetic ${\mathrm{Ni}}^{2+}$-${\mathrm{Mn}}^{2+}$ nearest-neighbor exchange interactions.