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Low-temperature structure and ESR study of quasi-one-dimensional ferromagnet gamma-p-NPNN

机译:准一维铁磁体γ-p-NPNN的低温结构和ESR研究

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The low-temperature structure analysis and low-temperature ESR were performed in the y-phase of p-NPNN, which is considered to be as a quasi-one-dimensional ferromagnet above the antiferromagnetic ordering temperature (0.65K without a static magnetic field). No structural phase transition was observed below 30K, but we found the large thermal shrinkage between the intra-chain p-NPNN molecules along c-axis. This result suggests that the one-dimensionality of the ferromagnetic chain is effectively enhanced at lower temperature, since the geometry through NO-NO_2 contact gives rise to the strong ferromagnetic interaction. Below 0.6K, we succeeded in observing the antiferromagnetic resonance (AFMR) using the low frequency (~300MHz) and low-temperature (0.5K) ESR. The frequency-field relation is well reproduced by the two-sublattice model with orthorhombic anisotropy.
机译:低温结构分析和低温ESR在p-NPNN的y相中进行,它被认为是高于反铁磁有序温度(0.65K,没有静磁场)的准一维铁磁体。 。在30K以下没有观察到结构相变,但是我们发现链内p-NPNN分子之间沿c轴有很大的热收缩。该结果表明,由于通过NO-NO_2接触的几何形状引起强的铁磁相互作用,因此在较低温度下铁磁链的一维被有效地增强。低于0.6K,我们使用低频(〜300MHz)和低温(0.5K)ESR成功观察了反铁磁共振(AFMR)。具有正交各向异性的二子格模型很好地再现了频率场关系。

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