论文标题

NMR在二元helimagnet FEP中的磁结构和超细相互作用的研究

NMR study of magnetic structure and hyperfine interactions in binary helimagnet FeP

论文作者

Gippius, A. A., Tkachev, A. V., Zhurenko, S. V., Büttgen, N., Schädler, M., Chernyavskii, I. O., Morozov, I. V., Aswartham, S., Büchner, B., Moskvin, A. S.

论文摘要

我们通过$ {}^{31} $ p NMR光谱法报告了对单磷化物FEP中基态螺旋磁结构的详细研究。我们表明,多晶样品的零场NMR光谱提供了有力的证据表明,p位点的局部磁场的各向异性分布,其非谐度比Mössbauerspsproproscroscopicy在FE地点发现的零磁场分布。从田间扫描$ {}^{31} $ p nmr光谱中,我们得出结论,在4-7 T的外部磁场范围内发生连续的自旋重取向过渡,这也通过特定的热量测量得到了证实。我们观察到两对磁性不相等的磷位置,导致单晶体$ {}^{}^{31} $ p NMR光谱的特征的明显四峰结构是不符合的helimagnetic基态的特征。我们揭示了由Fe旋转晶状体转变在高场中引起的P位点的局部场空间重新分布,并开发了一种有效的方法来说明它。我们证明,所有观察到的$ {}^{31} $ p光谱都可以在($ ab $) - ($ ab $) - 飞机中的同型磁矩的模型中进行处理,并在36美元$^{\ circ} $和176 $^{\ circ} $之间使用Fe1-fe3(fe2-fe3(fe2-fe1-fe1-fe1-fe14)和Fe1-fe1-fe1-fe 36 $^{\ circ} $ 2(\ circ} $)。中子散射数据。

We report a detailed study of the ground state helical magnetic structure in monophosphide FeP by means of ${}^{31}$P NMR spectroscopy. We show that the zero-field NMR spectrum of the polycrystalline sample provides strong evidence of an anisotropic distribution of local magnetic fields at the P site with substantially lower anharmonicity than that found at the Fe site by Mössbauer spectroscopy. From field-sweep ${}^{31}$P NMR spectra we conclude that a continuous spin-reorientation transition occurs in an external magnetic field range of 4 - 7 T, which is also confirmed by specific-heat measurements. We observe two pairs of magnetically inequivalent phosphorus positions resulting in a pronounced four-peak structure of the single crystal ${}^{31}$P NMR spectra characteristic of an incommensurate helimagnetic ground state. We revealed a spatial redistribution of local fields at the P sites caused by Fe spin-reorientation transition in high fields and developed an effective approach to account for it. We demonstrate that all observed ${}^{31}$P spectra can be treated within a model of an isotropic helix of Fe magnetic moments in the ($ab$)-plane with a phase shift of 36$^{\circ}$ and 176$^{\circ}$ between Fe1-Fe3 (Fe2-Fe4) and Fe1-Fe2 (Fe3-Fe4) sites, respectively, in accordance with the neutron scattering data.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源