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Serious discrepancies between nuclear magnetic resonance and neutron scattering measurements in the critical region of classic two-dimensional magnets and anomalous behaviors at low temperatures

机译:核磁共振与中子散射测量在经典二维磁体的临界区域和低温下的异常行为之间的严重差异

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A characterization of 2D critical behavior in the classic 2D antiferromagnets K_2NiF_4, RB_2MnF_4, and K_2MnF_4 made originally by Birgeneau et al. [Phys. Rev. B 1, 2211 (1970)], using neutron scattering (NS), is used to review NMR data in these compounds and in some classic 2D ferromagnets. On analyzing the NMR data, very serious discrepancies were found between the NMR and NS results for the critical exponent ?, with the values of the NMR ?s being some 50% higher. Some novel results were also found, including 2D cases where ? = 0.33 (but characterized by a non-3D parameter, D ~ 1). The discrepancies surely need to be resolved, and if the present analysis of the NMR data is further validated, these results could present a clear and nontrivial hurdle for current critical-region theories. Additionally, from the NMR data it was found that the low-temperature behaviors of these classical 2D systems are at odds with the predictions of conventional spin-wave theory analyses.
机译:由Birgeneau等人最初制作的经典2D反子ag,RB_2MNF_4和K_2MNF_4中的2D临界行为的表征。 [物理。 Rev.B 1,2211(1970)]使用中子散射(NS),用于在这些化合物中和一些经典的2D铁磁体中审查NMR数据。在分析NMR数据时,临界指数的NMR和NS结果中发现了非常严重的差异?,NMRΔS的值较高约50%。还发现了一些新的结果,包括2D病例在哪里? = 0.33(但是以非3D参数为特征,D〜1)。差异肯定需要解决,如果进一步验证了对NMR数据的目前分析,这些结果可能为当前的临界区域理论提供清晰而非跨越的障碍。另外,从NMR数据中发现,这些经典2D系统的低温行为与传统的旋转波理论分析的预测有所差。

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