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Single-ion anisotropy and magnetic field response in spin ice materials Ho2Ti2O7 and Dy2Ti2O7

机译:自旋冰材料Ho2Ti2O7和Dy2Ti2O7中的单离子各向异性和磁场响应

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摘要

© 2015 American Physical Society.Motivated by its role as a central pillar of current theories of the dynamics of spin ice in and out of equilibrium, we study the single-ion dynamics of the magnetic rare-earth ions in their local environments, subject to the effective fields set up by the magnetic moments with which they interact. This effective field has a transverse component with respect to the local easy axis of the crystal electric field, which can induce quantum tunneling. We go beyond the projective spin-1/2 picture and use instead the full crystal-field Hamiltonian. We find that the Kramers versus non-Kramers nature, as well as the symmetries of the crystal-field Hamiltonian, result in different perturbative behavior at small fields (1T), with transverse field effects being more pronounced in Ho2Ti2O7 than in Dy2Ti2O7. Remarkably, the energy splitting range we find is consistent with time scales extracted from experiments. We also present a study of the static magnetic response, which highlights the anisotropy of the system in the form of an off-diagonal g tensor, and we investigate the effects of thermal fluctuations in the temperature regime of relevance to experiments. We show that there is a narrow but accessible window of experimental parameters where the anisotropic response can be observed.
机译:©2015美国物理学会。由于其作为当前自旋冰平衡和不平衡动力学理论的核心支柱,我们研究了稀土磁性离子在其局部环境中的单离子动力学,有效磁场由它们相互作用的磁矩建立。该有效场相对于晶体电场的局部易轴具有横向分量,这可以引起量子隧穿。我们超越了投射自旋1/2图像,而是使用完整的晶体场哈密顿量。我们发现,Kramers与非Kramers的性质以及晶体场哈密顿量的对称性会导致在小场(1T)上产生不同的摄动行为,其中Ho2Ti2O7的横向场效应比Dy2Ti2O7更为明显。值得注意的是,我们发现的能量分裂范围与从实验中提取的时间尺度一致。我们还提出了对静态磁响应的研究,该研究以非对角g张量的形式突出了系统的各向异性,并且我们研究了温度波动对实验相关性的影响。我们表明,有一个狭窄但可访问的实验参数窗口,可以观察到各向异性响应。

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