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Structural and magnetic properties of the Kagome antiferromagnet YbBaCo4O7

机译:Kagome反铁磁体YbBaCo4O7的结构和磁性

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The mixed-valent compound YbBaCo4O7 is built up of Kagome sheets of CoO4 tetrahedra, linked in the third dimension by a triangular layer of CoO4 tetrahedra in an analogous fashion to that found in the known geometrically frustrated magnets such as pyrochlores and SrCr9xGa12-9xO19 (SCGO). We have undertaken a study of the structural and magnetic properties of this compound using combined high-resolution powder neutron and synchrotron X-ray diffraction. YbBaCo4O7 undergoes a first-order trigonal -> orthorhombic phase transition at 175 K. We show that this transition occurs as a response to a markedly underbonded Ba2+ site in the high-temperature phase and does not appear to involve charge ordering of Co2+/Co3+ ions in the tetrahedra. The symmetry lowering relieves the geometric frustration of the structure, and a long-range-ordered 3-D antiferromagnetic state develops below 80 K. (c) 2006 Published by Elsevier Inc.
机译:混合价化合物YbBaCo4O7由Kagome CoO4四面体薄片构成,在三维中通过CoO4四面体的三角形层连接,与已知的几何受挫磁体如烧绿石和SrCr9xGa12-9xO19(SCGO)相似)。我们已经使用高分辨率粉末中子和同步加速器X射线衍射对这种化合物的结构和磁性进行了研究。 YbBaCo4O7在175 K处经历一阶三角->斜方相变。我们证明了这种转变是对高温相中Ba2 +键位明显欠键的响应,并且似乎不涉及Co2 + / Co3 +离子的电荷排序在四面体中。对称性降低减轻了结构的几何受挫感,并且在80 K以下形成了长程有序的3-D反铁磁态。(c)2006由Elsevier Inc.发布。

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