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通过磁化强度、比热和中子衍射分析研究的(MoRE)AlC、RE=Tb和Dy的磁相图。

Magnetic phase diagram of (MoRE)AlC, RETb and Dy, studied by magnetization, specific heat, and neutron diffraction analysis.

作者信息

Tao Quanzheng, Barbier Maxime, Mockute Aurelija, Ritter Clemens, Salikhov Ruslan, Wiedwald Ulf, Calder Stuart, Opagiste Christine, Galera Rose-Marie, Farle Michael, Ouisse Thierry, Rosen Johanna

机构信息

Materials Design Division, Department of Physics, Chemistry, and Biology (IFM), Linköping University, SE-581 83 Linköping, Sweden.

Uni. Grenoble Alpes, CNRS, Grenoble INP, LMGP, F-38000 Grenoble, France.

出版信息

J Phys Condens Matter. 2022 Mar 29;34(21). doi: 10.1088/1361-648X/ac5bcf.

Abstract

We report the results of magnetization, heat capacity, and neutron diffraction measurements on (MoRE)AlC with RE = Dy and Tb. Temperature and field-dependent magnetization as well as heat capacity were measured on a powder sample and on a single crystal allowing the construction of the magnetic field-temperature phase diagram. To study the magnetic structure of each magnetic phase, we applied neutron diffraction in a magnetic field up to 6 T. For (MoDy)AlC in zero field, a spin density wave is stabilized at 16 K, with antiferromagnetic ordering at 13 K. Furthermore, we identify the coexistence of ferromagnetic and antiferromagnetic phases induced by magnetic fields for both RE = Tb and Dy. The origin of the field induced phases is resulting from the competing ferromagnetic and antiferromagnetic interactions.

摘要

我们报告了对 RE 为 Dy 和 Tb 的 (MoRE)AlC 进行磁化、热容量和中子衍射测量的结果。在粉末样品和单晶上测量了温度和磁场依赖的磁化强度以及热容量,从而构建了磁场 - 温度相图。为了研究每个磁相的磁结构,我们在高达 6 T 的磁场中应用了中子衍射。对于零场下的 (MoDy)AlC,自旋密度波在 16 K 时稳定,在 13 K 时出现反铁磁有序。此外,我们确定了对于 RE = Tb 和 Dy,磁场诱导的铁磁相和反铁磁相的共存。场诱导相的起源是由铁磁和反铁磁相互作用的竞争导致的。

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