Magnetic and Superconducting Materials Section, Raja Ramanna Centre for Advanced Technology, Indore 452 013, India.
J Phys Condens Matter. 2011 Feb 9;23(5):056002. doi: 10.1088/0953-8984/23/5/056002. Epub 2011 Jan 19.
The magnetic properties of the rare-earth intermetallic compound DyAg(2) are studied in detail with the help of magnetization and heat capacity measurements. It is shown that the multiple magnetic phase transitions can be induced in DyAg(2) both by temperature and magnetic field. The detailed magnetic phase diagram of DyAg(2) is determined experimentally. It was already known that DyAg(2) undergoes an incommensurate to commensurate antiferromagnetic phase transition close to 10 K. The present experimental results highlight the first order nature of this phase transition, and show that this transition can be induced by magnetic field as well. It is further shown that another isothermal magnetic field induced transition or metamagnetic transition exhibited by DyAg(2) at still lower temperatures is also of first order nature. The multiple magnetic phase transitions in DyAg(2) give rise to large peaks in the temperature dependence of the heat capacity below 17 K, which indicates its potential as a magnetic regenerator material for cryocooler related applications. In addition it is found that because of the presence of the temperature and field induced magnetic phase transitions, and because of short range magnetic correlations deep inside the paramagnetic regime, DyAg(2) exhibits a fairly large magnetocaloric effect over a wide temperature window, e.g., between 10 and 60 K.
在磁化和热容测量的帮助下,详细研究了稀土金属间化合物 DyAg(2)的磁性。结果表明,DyAg(2)可以通过温度和磁场诱导出多种磁相变。实验确定了 DyAg(2)的详细磁相图。已知 DyAg(2)在接近 10 K 时经历了从不相干到相干反铁磁相变。目前的实验结果突出了这一相变的一级性质,并表明该相变也可以由磁场诱导。进一步表明,DyAg(2)在更低温度下表现出的另一个等温热场诱导相变或变磁相变也具有一级性质。DyAg(2)中的多种磁相变导致在 17 K 以下的热容随温度的变化中出现大的峰值,这表明它有可能成为与低温冷却器相关应用的磁性回热器材料。此外,由于存在温度和磁场诱导的磁相变,以及在顺磁区深处存在短程磁关联,DyAg(2)在很宽的温度范围内表现出相当大的磁热效应,例如在 10 到 60 K 之间。