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三角反铁磁体BaCoTaO中的双相变

Double phase transition in the triangular antiferromagnet BaCoTaO.

作者信息

Ranjith K M, Brinda K, Arjun U, Hegde N G, Nath R

机构信息

School of Physics, Indian Institute of Science Education and Research Thiruvananthapuram-695016, India.

出版信息

J Phys Condens Matter. 2017 Mar 22;29(11):115804. doi: 10.1088/1361-648X/aa57be. Epub 2017 Jan 9.

Abstract

Here, we report the synthesis and magnetic properties of a new triangular lattice antiferromagnet BaCoTaO. The effective spin of Co is found to be J  =  1/2 at low temperatures due to the combined effect of crystal field and spin-orbit coupling. BaCoTaO undergoes two successive magnetic phase transitions at [Formula: see text] K and [Formula: see text] K in zero applied field, which is typical for triangular antiferromagnets with the easy-axis magnetic anisotropy. With increasing field, the transition anomalies are found to shift toward low temperatures, confirming the antiferromagnetic nature of the transitions. At higher fields, the transition peaks in the heat capacity data disappear and give way to a broad maximum, which can be ascribed to a Schottky anomaly due to the Zeeman splitting of spin levels. The H  -  T phase diagram of the compound shows three distinct phases. The possible nature of these phases is discussed.

摘要

在此,我们报道了一种新型三角晶格反铁磁体BaCoTaO的合成及磁性。由于晶体场和自旋轨道耦合的共同作用,在低温下Co的有效自旋被发现为J = 1/2。在零外场下,BaCoTaO在[公式:见正文]K和[公式:见正文]K经历两次连续的磁相变,这对于具有易轴磁各向异性的三角反铁磁体来说是典型的。随着场强增加,发现转变异常向低温移动,证实了转变的反铁磁性质。在更高场强下,热容数据中的转变峰消失,并被一个宽的最大值所取代,这可归因于自旋能级的塞曼分裂导致的肖特基异常。该化合物的H - T相图显示出三个不同的相。讨论了这些相可能的性质。

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