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利用μ子自旋旋转和弛豫研究铬硫尖晶石 Fe1-xCuxCr2S4 的磁性。

Magnetism of the chromium thio-spinels Fe1-xCuxCr2S4 studied using muon spin rotation and relaxation.

机构信息

Physics Department, Technical University Munich, D-85747 Garching, Germany.

出版信息

J Phys Condens Matter. 2013 May 8;25(18):186001. doi: 10.1088/0953-8984/25/18/186001. Epub 2013 Apr 16.

Abstract

Powder samples of Fe1-xCuxCr2S4 with x = 0,0.2,0.5,0.8 were studied, between 5 and 300 K. The results reveal that for x < 1, the magnetic order in the series is more varied than the simple collinear ferrimagnetic structure traditionally assumed to exist everywhere from the Curie point to T → 0. In FeCr2S4 several ordered magnetic phases are present, with the ground state likely to have an incommensurate cone-like helical structure. Fe0.8Cu0.2Cr2S4 is the compound for which simple collinear ferrimagnetism is best developed. In Fe0.5Cu0.5Cr2S4 the ferrimagnetic spin structure is not stable, causing spin reorientation around 90 K. In Fe0.2Cu0.8Cr2S4 the ferrimagnetic structure is at low temperatures considerably distorted locally, but with rising temperature this disorder shows a rapid reduction, coupled to increased spin fluctuation rates. In summary, the present data show that the changes induced by the replacement of Fe by Cu have more profound influences on the magnetic properties of the Fe1-xCuxCr2S4 compounds than merely a shift of Curie temperature, saturation magnetization and internal field magnitude.

摘要

研究了 Fe1-xCuxCr2S4(x = 0、0.2、0.5、0.8)的粉末样品,温度范围为 5 到 300 K。结果表明,对于 x < 1,该系列中的磁序比传统上假定存在于居里点到 T→0 之间的简单共线反铁磁结构更为多样。在 FeCr2S4 中存在几种有序磁相,基态可能具有非共面锥形螺旋结构。Fe0.8Cu0.2Cr2S4 是简单共线反铁磁性最好发展的化合物。在 Fe0.5Cu0.5Cr2S4 中,反铁磁自旋结构不稳定,导致 90 K 左右的自旋重定向。在 Fe0.2Cu0.8Cr2S4 中,低温下反铁磁结构局部严重变形,但随着温度升高,无序迅速减少,同时自旋涨落速率增加。总之,目前的数据表明,Fe 被 Cu 取代所引起的变化对 Fe1-xCuxCr2S4 化合物的磁性质的影响比仅仅改变居里温度、饱和磁化强度和内场幅度更为深远。

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