论文标题

在TB0.6PR0.4MNO3中,从正弦型到共线A型抗磁性磁相变的演变

Evolution from sinusoidal to collinear A-type antiferromagnetic spin-ordered magnetic phase transition in Tb0.6Pr0.4MnO3

论文作者

Agarwal, Harshit, Alonso, Jose A, Muñoz, Ángel, Choudhary, R J, Srivastava, O N, Shaz, M A

论文摘要

本研究报告了使用高分辨率的中子粉末衍射(NPD)(PSI)收集的高分辨率中子粉末衍射(NPD)中的PR掺杂多晶TB0.6PR0.4MNO3中的结构和磁相跃迁,以强调pure tbmno3和colinear colinear colinear to coline to coline to-coline to-coline to-coline to-colinep to-coline to colinep to-coline to-colinep to colinep to-coline to colinep to-colinep o.已经计算出用于多晶型阳离子TB0.6PR0.4MNO3的相位纯度,Jahn-Teller失真和单电子带宽,而与Parents Materials TBMNO3和PRMNO3相比,通过Rietveld Primno3,通过Rietveld Primnoement the rietveld Primenept x-ray Diflefray data Data Data Data at reamy data at reamy data at reamy data at reamy data at reamy data at reamy data at reamy data at reamy data at reamy data at reamy data at reamy data。在低温下,温度依赖温度依赖温度的零场冷却和现场冷却的DC磁化研究揭示了由于TB3+位点的PR3+替换的效果,磁相变的差异,这给出了样品的抗磁性性质的特征,在低温下受到外部磁性弱的弱铁磁成分,由外部磁性领域受到了弱的效能组分。在低温下,依赖场的磁化研究可使弱的固定性具有2个KOE,这是由于倾斜的旋转布置或terbium Order的铁磁性而预期的。 TB0.6PR0.4MNO3的NPD数据证实,合成样品的核结构将其正交对称性保持在1.5 k。此外,通过NPD研究,通过NPD研究在50 K,25 K和1.5 K上求解了磁性结构,该研究通过NPD研究,该研究显示A-Type抗抗抗抗量型抗体式抗体量构型。

The present study reports on the structural and magnetic phase transitions in Pr-doped polycrystalline Tb0.6Pr0.4MnO3, using high-resolution neutron powder diffraction (NPD) collected at SINQ spallation source (PSI), to emphasize the suppression of the sinusoidal magnetic structure of pure TbMnO3 and the evolution to a collinear A-type antiferromagnetic ordering. The phase purity, Jahn-Teller distortion, and one-electron bandwidth for eg orbital of Mn3+ cation have been calculated for polycrystalline Tb0.6Pr0.4MnO3, in comparison to the parent materials TbMnO3 and PrMnO3, through the Rietveld refinement study from X-ray diffraction data at room temperature. The temperature-dependent zero field-cooled and field-cooled dc magnetization study at low temperature down to 5 K reveals a variation in the magnetic phase transition due to the effect of Pr3+ substitution at the Tb3+ site, which gives the signature of the antiferromagnetic nature of the sample, with a weak ferromagnetic component at low temperature induced by an external magnetic field. The field-dependent magnetization study at low temperatures gives the weak coercivity having the order of 2 kOe, which is expected due to canted-spin arrangement or ferromagnetic nature of Terbium ordering. The NPD data for Tb0.6Pr0.4MnO3 confirms that the nuclear structure of the synthesized sample maintains its orthorhombic symmetry down to 1.5 K. Also, the magnetic structures have been solved at 50 K, 25 K, and 1.5 K through the NPD study, which shows A-type antiferromagnetic spin arrangement.

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