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Spin dynamics in the ordered spin ice Tb_2Sn_2O_7

机译:有序自旋冰Tb_2Sn_2O_7中的自旋动力学

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Inelastic neutron scattering experiments have been carried out in the "ordered spin ice" Tb_2Sn_2O_7, aiming at a detailed understanding of the low-energy magnetic excitations in this highly frustrated magnet. Besides the crystal-field transition lines, we report on a well-defined low-energy line that develops in the ordered phase. We show that the intensity of this transition cannot be understood within the trigonal crystal-field scheme and argue that an interaction, which involves the spin lattice coupling through a low-temperature distortion of the trigonal crystal field, is necessary to explain the data. Based on random-phase approximation spin-dynamics calculations, taking into account the actual crystal-field scheme as well as this distortion, we successfully describe the neutron data, quantitatively consistent with the experimental observations.
机译:已经在“有序自旋冰” Tb_2Sn_2O_7中进行了非弹性中子散射实验,旨在详细了解这种高度受挫的磁体中的低能磁激发。除了晶体场跃迁线外,我们还报告了在有序相中形成的明确定义的低能谱线。我们表明,在三角形晶体场方案中无法理解这种跃迁的强度,并认为相互作用(包括通过三角形晶体场的低温变形通过自旋晶格耦合)是解释数据所必需的。基于随机相位近似自旋动力学计算,考虑到实际的晶体场方案以及这种畸变,我们成功地描述了中子数据,与实验观察在数量上是一致的。

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