Pakhira Santanu, Mazumdar Chandan, Basu Abhik, Ranganathan R, Bhowmik R N, Satpati Biswarup
Condensed Matter Physics Division, Saha Institute of Nuclear Physics, 1/AF, Bidhannagar, Kolkata, 700 064, India.
Department of Physics, Pondicherry University, R. V. Nagar, Kalapet, Pondicherry, 605014, India.
Sci Rep. 2018 Oct 5;8(1):14870. doi: 10.1038/s41598-018-32740-4.
In this study, the synthesis of a novel ternary intermetallic compound PrNiSi forming in single phase only by deliberately introducing vacancies in Ni/Si site is reported. The detailed studies on dc magnetization, heat capacity, ac magnetization & associated dynamical scaling, different types of non-equilibrium dynamical behaviour, viz., magnetic relaxation behaviour as a function of wait time and temperature, aging phenomena, and magnetic memory effect firmly establish that the compound exhibits spin freezing behaviour below 3.3 K (T). However, below T, temperature dependence of ac susceptibility data exhibit an additional peak that shows reverse frequency dependence to that generally observed in a glassy system. The unusual bidirectional frequency dependence in a single magnetic system is of significant interest and rarely reported in literature. Competing exchange interaction arising from c/a ~ 1 and crystallographic randomness driven magnetic phase separation has been argued to be responsible for such observation. The reverse frequency shift of the low temperature peak has been described on the basis of a simple phenomenological model proposed in this work.
在本研究中,报道了一种新型三元金属间化合物PrNiSi的合成,该化合物仅通过在Ni/Si位点有意引入空位而以单相形式形成。对直流磁化强度、热容量、交流磁化强度及相关动力学标度、不同类型的非平衡动力学行为(即作为等待时间和温度函数的磁弛豫行为、老化现象以及磁记忆效应)的详细研究有力地证实,该化合物在3.3 K(T)以下表现出自旋冻结行为。然而,在T以下,交流磁化率数据的温度依赖性呈现出一个额外的峰,该峰显示出与玻璃态系统中通常观察到的相反的频率依赖性。在单一磁性系统中这种不寻常的双向频率依赖性极具研究价值,且在文献中鲜有报道。由c/a ~ 1和晶体学随机性驱动的磁相分离所产生的竞争交换相互作用被认为是导致这种观察结果的原因。基于本工作中提出的一个简单唯象模型描述了低温峰的反向频移。