A study of the Neel transition and the Kondo-like effect of γ-Fe-Mn-Si alloys

Zhang Sheng
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引用次数: 16

Abstract

The temperature (T) dependences of the magnetic susceptibility, chi , electrical resistivity, rho , and elastic modulus, E, of gamma -Fe-31 at.% Mn alloys containing 2.04, 5.33 and 8.71 at.% Si were examined. The Neel transition accompanied by an anomalous change of rho and E has been found in these alloys. With increasing Si content, the Neel temperature TN decreases; for T>TN, the magnetic state of the alloys transforms from Pauli paramagnetism to a paramagnetic state obeying the Curie-Weiss law, and the anomalous resistivity increases rapidly to present a negative temperature coefficient below TN. In lowering the temperature 4.2 K, no second resistivity anomaly for gamma -Fe-31 at.% Mn alloy was found, but a secondary resistivity minimum was observed at about 34 K in the gamma -Fe-31 at.% Mn-5.3 at.% Si alloy. It appears to be due to the Kondo-like effect. This leads the author to assume that both the formation of a localised net magnetic moment on Fe atoms and the transition from incommensurate to commensurate spin-density-wave state are caused by an addition of Si to gamma -Fe-Mn alloys.
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γ-Fe-Mn-Si合金的Neel相变及近道效应研究
γ -Fe-31 at的磁化率chi、电阻率rho和弹性模量E与温度的关系。含2.04,5.33和8.71 at的% Mn合金。% Si进行了检测。在这些合金中发现了伴有rho和E异常变化的尼尔转变。随着Si含量的增加,Neel温度TN减小;当T>TN时,合金的磁态由泡利顺磁性转变为服从居里-魏斯定律的顺磁性,异常电阻率迅速增大,在TN以下呈现负温度系数。当温度降低4.2 K时,γ -Fe-31 at无二次电阻率异常。γ -Fe-31合金的二次电阻率最小值出现在约34 K处。% Mn-5.3 at。% Si合金。这似乎是由于近藤效应。这导致作者假设,铁原子上局部净磁矩的形成和从不相称到相称的自旋密度波状态的转变都是由向γ -Fe-Mn合金中添加Si引起的。
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