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R5Pd2(R = Ho,Tb)化合物中通过交流磁化率和中子散射测量证实的团簇玻璃磁态。

A cluster-glass magnetic state in R5Pd2 (R = Ho, Tb) compounds evidenced by AC-susceptibility and neutron scattering measurements.

机构信息

Institute of Metal Physics, Russian Academy of Science, Yekaterinburg, Russia.

出版信息

J Phys Condens Matter. 2013 Jun 12;25(23):236003. doi: 10.1088/0953-8984/25/23/236003. Epub 2013 May 16.

Abstract

AC- and DC-susceptibility, high-field magnetization and neutron diffraction measurements have been performed in order to study the magnetic state of R5Pd2 (R = Ho, Tb) compounds. The results show that both compounds undergo cluster-glass freezing upon cooling below Tf. According to the neutron diffraction a long-range magnetic order is absent down to 2 K and magnetic clusters with short-range incommensurate antiferromagnetic correlations exist not only below Tf but also in a wide temperature range above the freezing temperature (at least up to 2Tf). A complex cluster-glass magnetic state existing in Ho5Pd2 and Tb5Pd2 down to low temperatures results in rather complicated magnetization behavior in DC and AC magnetic fields. Such an unusual magnetic state in compounds with a high rare-earth concentration may be associated with the layered type of their crystal structure and with substantial atomic disorder, which results in frustrations in the magnetic subsystem.

摘要

为了研究 R5Pd2(R = Ho、Tb)化合物的磁态,我们进行了交流和直流磁化率、高场磁化和中子衍射测量。结果表明,这两种化合物在冷却到 Tf 以下时都会经历团簇玻璃冻结。根据中子衍射,在 2 K 以下不存在长程磁有序,并且不仅在 Tf 以下,而且在冻结温度以上的宽温度范围内(至少在 2Tf 以上)存在具有短程非共线反铁磁关联的磁性团簇。在 Ho5Pd2 和 Tb5Pd2 中存在的复杂团簇玻璃磁态导致在直流和交流磁场中磁化行为相当复杂。在具有高稀土浓度的化合物中出现这种异常的磁态可能与它们的层状晶体结构以及大量的原子无序有关,这导致磁子系统中的受挫。

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