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Metamagnetic Transitions versus Magnetocrystalline Anisotropy in Two Cobalt Arsenates with 1D Co2+ Chains

机译:具有1D二氧化碳+链的两种钴中的心肌转型与磁镀晶各向异性

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摘要

We have investigated two original hydrated cobalt arsenates based on Co2+ octahedral edge-sharing chains. Their different magnetocrystalline anisotropies induce different types of metamagnetic transitions: spin-flop versus spin-flip. In both compounds, a strong local anisotropy (Ising spins) is favored by the spin-orbit coupling present in the CoO6 octahedra, while ferromagnetic (FM) exchanges predominate in the chains. Co-2(As2O7)center dot 2H(2)O (1) orders antiferromagnetically below T-N = 6.7 K. The magnetic structure is a noncollinear antiferromagnetic spin arrangement along the zigzag chains with DFT calculations implying frustrated chains and weakened anisotropy. A metamagnetic transition suggests a spin-flop process above mu H-0 = 3.2 T. In contrast, in BaCo2As2O8 center dot 2H(2)O (2) linear chains are arranged in disconnected layers, with only interchain ferromagnetic exchanges, therefore increasing its magnetocrystalline anisotropy. The magnetic structure is collinear with a magnetic easy axis that allows a spin-flop to a sharp spin-flip transition below T-N = 15.1 K and above mu H-0 = 6.2 T.
机译:我们已经调查了基于CO2 +八面边缘共享链两个原始水合钴砷酸盐。他们不同的磁各向异性引起不同类型的变磁转变:旋翻牌与自旋翻转。在两种化合物中,一个强大的本地各向异性(伊辛自旋)由存在于该CoO6八面体的自旋 - 轨道耦合的青睐,而铁磁(FM)的交流在链占优势。共-2-(As2O7)中心点2H(2)O(1)订单反铁磁低于T-N = 6.7 K.磁性结构是沿着锯齿链与DFT计算暗示受挫链和减弱各向异性的非共线的反铁磁排列。甲变磁过渡表明上述亩H-0 = 3.2 T.相反旋触发器过程中,在中心BaCo2As2O8点2H(2)O(2)的线性链排列在断开层,只有链间铁磁交换,因此增加了其磁晶各向异性。磁结构是共线具有易磁化轴,其允许旋转触发器到低于T-N急剧自旋反转过渡= 15.1 K和上述亩H-0 = 6.2 T.

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