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The Forced Magnetostrictions and Magnetic Properties of Ni2MnX (X = In Sn) Ferromagnetic Heusler Alloys

机译:Ni2MnX(X = InSn)铁磁Heusler合金的强迫磁致伸缩和磁性能

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摘要

Experimental studies into the forced magnetostriction, magnetization, and temperature dependence of permeability in Ni MnIn and Ni MnSn ferromagnetic Heusler alloys were performed according to the spin fluctuation theory of itinerant ferromagnetism proposed by Takahashi. We investigated the magnetic field ( ) dependence of magnetization ( ) at the Curie temperature , and at = 4.2 K, which concerns the ground state of the ferromagnetic state. The - result at was analyzed by means of the versus dependence. At 4.2 K, it was investigated by means of an Arrott plot ( / vs. ) according to Takahashi’s theory. As for Ni MnIn and Ni MnSn, the spin fluctuation parameters in -space (momentum space, ) and that in energy space (frequency space, ) obtained at and 4.2 K were almost the same. The average values obtained at and 4.2 K were = 342 K, = 276 K for Ni MnIn and = 447 K, = 279 K for Ni MnSn, respectively. The forced magnetostriction at was also investigated. The forced linear magnetostriction (Δ / ) and the forced volume magnetostriction (Δ / ) were proportional to , which followed Takahashi’s theory. We compared the forced volume magnetostriction Δ / and mechanical parameter, bulk modulus . Δ / is inversely proportional to . We also discuss the spin polarization of Ni MnIn and other magnetic Heusler alloys. The / of Ni MnIn was 0.860. This is comparable with that of Co MnGa, which is a famous half-metallic alloy.
机译:根据高桥提出的流动铁磁性的自旋涨落理论,对Ni MnIn和Ni MnSn铁磁性Heusler合金的强迫磁致伸缩,磁化强度和磁导率的温度依赖性进行了实验研究。我们研究了居里温度下= 4.2 K时磁场()对磁化强度()的依赖性,这与铁磁态的基态有关。通过对依赖关系分析了-的结果。根据高桥的理论,在4.2 K时,通过Arrott图(/ vs.)对其进行了研究。对于Ni MnIn和Ni MnSn,在和4.2 K下获得的-空间(动量空间)和能量空间(频率空间)的自旋涨落参数几乎相同。对于Ni MnIn,在4.2 K和4.2 K处获得的平均值分别为= 342 K,= 276 K和对于Ni MnSn,其平均值分别为= 447 K,= 279K。还研究了强制磁致伸缩。强迫线性磁致伸缩(Δ/)和强迫体积磁致伸缩(Δ/)与Takahashi的理论成正比。我们比较了强制体积磁致伸缩Δ/和机械参数,体积模量。 Δ/与。成反比。我们还将讨论Ni MnIn和其他磁性Heusler合金的自旋极化。 Ni MnIn的/为0.860。这与著名的半金属合金Co MnGa相当。

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