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Relations of crystal structure to magnetic properties in the quasi-one-dimensional compound PbNi1.88Mg0.12V2O8

机译:准一维化合物PbNi1.88Mg0.12V2O8的晶体结构与磁性能的关系

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The crystal structure of the quasi-one-dimensional oxide PbNi1.88Mg0.12V2O8 has been studied by Rietveld analysis of combined high-resolution neutron and X-ray powder diffraction data at 300 K and at low temperatures. The (Ni/Mg)O-6 octahedral units share a common edge and form spiral chains along the c-axis of the tetragonal unit cell, without deviating the I4(1)cd (Z = 8) symmetry upon cooling. DC magnetic susceptibility measurements show that the system undergoes a magnetic phase transition below T-N congruent to 3.4 K. Rietveld analysis of the medium resolution neutron powder diffraction data confirms that impurity-induced antiferromagnetic order (with propagation vector, kappa = [000]) takes over from the Haldane ground state of the parent compound. The power-law [beta = 0.31(3)] temperature evolution of the strongest magnetic Bragg peak intensity indicates three-dimensional Ising-type magnetic interactions, while the reduced magnitude of the Ni2+ moment [ = 0.98(3) mu(B)] suggests important zero-point spin fluctuations. Structural considerations are consistent with small changes in the interatomic distances around the bridging tetrahedral VO4 entities separating the chains. However, no bulk structural phase transition concurrent to the Neel ordering is found. We show that the modification of intra- and inter-chain Ni-Ni distances upon cooling promotes the magnetic coupling of the end-of-chain liberated S = 1/2 spins and leads to antiferromagnetic ordering. (C) 2004 Elsevier Inc. All rights reserved.
机译:通过Rietveld分析高分辨率中子和X射线粉末衍射数据在300 K和低温下的结合,研究了准一维氧化物PbNi1.88Mg0.12V2O8的晶体结构。 (Ni / Mg)O-6八面体单元共有一个公共边,并沿着四角形晶胞的c轴形成螺旋链,而不会在冷却时偏离I4(1)cd(Z = 8)对称性。直流磁化率测量表明,该系统在TN以下至3.4 K处经历了低于TN的磁相变。中分辨率中子粉末衍射数据的Rietveld分析证实,杂质引起的反铁磁有序(具有传播矢量,kappa = [000])来自母体化合物的Haldane基态。最强的磁性布拉格峰强度的幂律[β= 0.31(3)]温度演化表明三维伊辛型磁相互作用,而Ni2 +矩的减小幅度[μ= 0.98(3)mu( B)]提示重要的零点自旋波动。结构上的考虑与桥接链分离的四面体VO4实体周围原子间距的微小变化相一致。但是,没有发现与Neel有序并发的本体结构相变。我们表明,冷却时改变链内和链间Ni-Ni的距离会促进链末端释放S = 1/2自旋的磁耦合,并导致反铁磁有序。 (C)2004 Elsevier Inc.保留所有权利。

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