Institute for Materials Research, Tohoku University, Sendai, 980-8577, Japan.
J Phys Condens Matter. 2011 Aug 17;23(32):326001. doi: 10.1088/0953-8984/23/32/326001. Epub 2011 Jul 25.
DC and AC magnetic measurements were carried out to clarify the difference in the magnetic ground state depending on the kinds of Z element used in the martensite phase in Ni-Mn-Z (Z = In, Sn and Sb) off-stoichiometric Heusler alloys. Magnetic field cooling effects were observed in the DC thermomagnetization curves in the low temperature regions, and a frequency dependence on AC susceptibility was also observed in both real and imaginary parts of the susceptibility. Negative divergence was clearly observed in nonlinear AC susceptibility only for the Ni(50)Mn(40)Sb(10) alloy, suggesting that the magnetic feature of its ground state is the spin-glass state. The magnetic ground state of the martensite phase in these alloys would relate to the magnetic configuration of the Mn atoms in the ferromagnetic austenite phase.
进行了直流和交流磁测量,以阐明 Ni-Mn-Z(Z=In、Sn 和 Sb)组成非化学计量 Heusler 合金中马氏体相使用的 Z 元素种类对磁基态的影响。在低温区的直流磁化曲线中观察到磁场冷却效应,并且在磁化率的实部和虚部都观察到交流磁化率的频率依赖性。仅对于 Ni(50)Mn(40)Sb(10)合金,在非线性交流磁化率中明显观察到负的发散,表明其基态的磁特性是自旋玻璃态。这些合金中马氏体相的磁基态与铁磁奥氏体相中 Mn 原子的磁构型有关。