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Defects, Tunneling, and EPR Spectra of Single-Molecule Magnets

机译:单分子磁体的缺陷,隧穿和EPR谱

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摘要

We examine theoretically electron paramagnetic resonance (EPR) lineshapes as functions of resonance frequency, energy level, and temperature for single crystals of three different kinds of single-molecule nanomagnets (SMMs): Mn_(12) acetate, Fe_8Br, and the S = 9/2 Mn_4 compound. We use a density-matrix equation and consider distributions in the uniaxial (second-order) anisotropy parameter D and the g factor, caused by possible defects in the samples. Additionally, weak intermolecular exchange and electronic dipole interactions are included in a mean-field approximation. Our calculated linewidths are in good agreement with experiments. We find that the distribution in D is common to the three examined single-molecule magnets. This could provide a basis for a proposed tunneling mechanism due to lattice defects or imperfections. We also find that weak intermolecular exchange and dipolar interactions are mainly responsible for the temperature dependence of the lineshapes for all three SMMs, and that the intermolecular exchange interaction is more significant for Mn_4 than for the other two SMMs. This finding is consistent with earlier experiments and suggests the role of spin-spin relaxation processes in the mechanism of magnetization tunneling.
机译:我们从理论上研究了三种不同类型的单分子纳米磁体(SMM)的单晶的共振频率,能级和温度的函数的电子顺磁共振(EPR)线形:Mn_(12)乙酸盐,Fe_8Br和S = 9 / 2 Mn_4化合物。我们使用密度矩阵方程,并考虑了由样品中可能存在的缺陷引起的单轴(二阶)各向异性参数D和g因子的分布。此外,平均场近似中包括弱分子间交换和电子偶极子相互作用。我们计算出的线宽与实验非常吻合。我们发现,D的分布是所检查的三个单分子磁体所共有的。这可以为由于晶格缺陷或缺陷而提出的隧穿机制提供基础。我们还发现,弱的分子间交换和偶极相互作用主要负责所有三个SMM的线形对温度的依赖性,并且Mn_4的分子间交换相互作用比其他两个SMM更为重要。这一发现与早期的实验是一致的,并表明自旋自旋弛豫过程在磁化隧穿机理中的作用。

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